Creatine and creatinine metabolism.

The goal of this review is to present a comprehensive survey of the many intriguing facets of creatine (Cr) and creatinine metabolism, encompassing the pathways and regulation of Cr biosynthesis and degradation, species and tissue distribution of the enzymes and metabolites involved, and of the inherent implications for physiology and human pathology. Very recently, a series of new discoveries have been made that are bound to have distinguished implications for bioenergetics, physiology, human pathology, and clinical diagnosis and that suggest that deregulation of the creatine kinase (CK) system is associated with a variety of diseases. Disturbances of the CK system have been observed in muscle, brain, cardiac, and renal diseases as well as in cancer. On the other hand, Cr and Cr analogs such as cyclocreatine were found to have antitumor, antiviral, and antidiabetic effects and to protect tissues from hypoxic, ischemic, neurodegenerative, or muscle damage. Oral Cr ingestion is used in sports as an ergogenic aid, and some data suggest that Cr and creatinine may be precursors of food mutagens and uremic toxins. These findings are discussed in depth, the interrelationships are outlined, and all is put into a broader context to provide a more detailed understanding of the biological functions of Cr and of the CK system.

[1]  M. Mcdaniel,et al.  Inhibition of nitric oxide formation by guanidines. , 1993, European journal of pharmacology.

[2]  J. Walker,et al.  Relative abilities of phosphagens with different thermodynamic or kinetic properties to help sustain ATP and total adenylate pools in heart during ischemia. , 1985, Archives of biochemistry and biophysics.

[3]  M. Micklus,et al.  Cation-exchange chromatography of guanidine derivatives in plasma of patients with chronic renal failure. , 1976, Clinical chemistry.

[4]  A. R. Marchese,et al.  THE EFFECTS OF CREATINE PHOSPHATE IN EXPERIMENTAL MYOCARDIAL INFARCTION , 1996 .

[5]  C. Scriver,et al.  Labile methyl group balances in the human: the role of sarcosine. , 1980, Metabolism: clinical and experimental.

[6]  A. J. Carter,et al.  Application and validation of an ion-exchange high-performance liquid chromatographic method for measuring adenine nucleotides, creatine and creatine phosphate in mouse brain. , 1990, Journal of chromatography.

[7]  Y. Takata,et al.  Identification of a tyrosine residue in rat guanidinoacetate methyltransferase that is photolabeled with S-adenosyl-L-methionine. , 1992, Biochemistry.

[8]  G. Radda,et al.  Brain metabolism is abnormal in the mdx model of Duchenne muscular dystrophy. , 1996, Brain : a journal of neurology.

[9]  G. Barsotti,et al.  Toxicity arising from guanidine compounds: role of methylguanidine as a uremic toxin. , 1975, Kidney international. Supplement.

[10]  R. Cook,et al.  Enzymatic properties of dimethylglycine dehydrogenase and sarcosine dehydrogenase from rat liver. , 1985, Archives of biochemistry and biophysics.

[11]  K Ugurbil,et al.  Bioenergetic abnormalities associated with severe left ventricular hypertrophy. , 1993, The Journal of clinical investigation.

[12]  H. Koide,et al.  Biosynthesis of Guanidinoacetic Acid in Isolated Renal Tubules , 1992, European journal of clinical chemistry and clinical biochemistry : journal of the Forum of European Clinical Chemistry Societies.

[13]  J. Manfredi,et al.  Taxol: an antimitotic agent with a new mechanism of action. , 1984, Pharmacology & therapeutics.

[14]  R. Kuzniecky,et al.  Normalization of contralateral metabolic function following temporal lobectomy demonstrated by 1H magnetic resonance spectroscopic imaging , 1996, Annals of neurology.

[15]  M. Yacoub,et al.  Energy metabolism and mechanical recovery after cardioplegia in moderately hypertrophied rats. , 1998, Molecular and cellular biochemistry.

[16]  Mildred A. Carlson,et al.  S-Adenosylmethionine: Guanidinoacetate N-Methyltransferase Activities in Livers from Rats with Hormonal Deficiencies or Excesses 1 , 1973, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.

[17]  J. Wilson,et al.  Antihyperglycemic action of guanidinoalkanoic acids: 3-guanidinopropionic acid ameliorates hyperglycemia in diabetic KKAy and C57BL6Job/ob mice and increases glucose disappearance in rhesus monkeys. , 1993, The Journal of pharmacology and experimental therapeutics.

[18]  S. Neubauer,et al.  Velocity of the creatine kinase reaction decreases in postischemic myocardium: a 31P-NMR magnetization transfer study of the isolated ferret heart. , 1988, Circulation research.

[19]  H. Eppenberger,et al.  Mitochondrial creatine kinase: a major constituent of pathological inclusions seen in mitochondrial myopathies. , 1994, Proceedings of the National Academy of Sciences of the United States of America.

[20]  S. Neubauer,et al.  Verapamil attenuates ATP depletion during hypoxia: 31P NMR studies of the isolated rat heart. , 1989, Journal of molecular and cellular cardiology.

[21]  S. R. Nash,et al.  Cloning, pharmacological characterization, and genomic localization of the human creatine transporter. , 1994, Receptors & channels.

[22]  C. Chaimovitz,et al.  Effect of guanidino-propionic acid on lymphocyte proliferation. , 1986, Nephron.

[23]  R. Sorrentino,et al.  The increase in blood pressure induced by inhibition of nitric oxide synthase in anesthetized Wistar rats is inversely related to basal blood pressure value. , 1997, Journal of cardiovascular pharmacology.

[24]  R Sanyal,et al.  Inhibition of the genotoxic effects of heterocyclic amines in human derived hepatoma cells by dietary bioantimutagens. , 1997, Mutagenesis.

[25]  T. Yokozawa,et al.  The use of 13C-labelling to prove that creatinine is oxidized by mammals into creatol and 5-hydroxy-1-methylhydantoin , 1991 .

[26]  A. Wechsler,et al.  Characteristics of chronic left ventricular hypertrophy induced by subcoronary valvular aortic stenosis. I. Myocardial blood flow and metabolism. , 1981, Journal of Thoracic and Cardiovascular Surgery.

[27]  K. R. Maples,et al.  On the mechanism of the inhibition of glutamine synthetase and creatine phosphokinase by methionine sulfoxide , 1996, Journal of neuroscience research.

[28]  M. Wyss,et al.  The therapeutic potential of oral creatine supplementation in muscle disease. , 1998, Medical hypotheses.

[29]  T. Wallimann,et al.  Brain ATP Metabolism in Hypoxia Resistant Mice Fed Guanidinopropionic Acid , 1998, Developmental Neuroscience.

[30]  H. Popper,et al.  Filtrations- und Resorptionsleistung in der Nierenpathologie , 1937 .

[31]  L. Becker,et al.  Preserved high energy phosphate metabolic reserve in globally "stunned" hearts despite reduction of basal ATP content and contractility. , 1987, Journal of molecular and cellular cardiology.

[32]  A. Heerschap,et al.  Creatine kinase (CK) in skeletal muscle energy metabolism: a study of mouse mutants with graded reduction in muscle CK expression. , 1994, Proceedings of the National Academy of Sciences of the United States of America.

[33]  B. Witzenbichler,et al.  Alteration of the cytosolic-mitochondrial distribution of high-energy phosphates during global myocardial ischemia may contribute to early contractile failure. , 1994, Circulation research.

[34]  P. Montagna Magnetic Resonance Spectroscopy in Migraine , 1995, Cephalalgia : an international journal of headache.

[35]  E. Shoubridge,et al.  A gated 31P NMR study of tetanic contraction in rat muscle depleted of phosphocreatine. , 1987, The American journal of physiology.

[36]  M. Knopp,et al.  Creatine deficiency syndrome caused by guanidinoacetate methyltransferase deficiency: diagnostic tools for a new inborn error of metabolism. , 1997, The Journal of pediatrics.

[37]  K. Tsukada,et al.  Decreased activities of glycine and guanidinoacetate methyltransferases and increased levels of creatine in tumor cells. , 1982, Biochemical and biophysical research communications.

[38]  J. Steghens,et al.  Synthesis and differential properties of creatine analogues as inhibitors for human creatine kinase isoenzymes. , 1996, European journal of biochemistry.

[39]  C. Davis,et al.  Enzymatic phase II activation of the N-hydroxylamines of IQ, MeIQx and PhIP by various organs of monkeys and rats. , 1993, Carcinogenesis.

[40]  K. Zerres,et al.  Analysis of Creatine Kinase Activity in 504 Patients with Proximal Spinal Muscular Atrophy Types I–III from the Point of View of Progression and Severity , 1998, European Neurology.

[41]  C. D. Fitch,et al.  β-Guanidinopropionate and phosphorylated β-guanidinopropionate as substrates for creatine kinase , 1979 .

[42]  J. Ingwall,et al.  Impaired cardiac energetics in mice lacking muscle-specific isoenzymes of creatine kinase. , 1998, Circulation research.

[43]  R. Myklebust,et al.  Reversible ultrastructural alterations in the myocytic mitochondria of isolated rat hearts induced by oxygen radicals. , 1997, Ultrastructural pathology.

[44]  B. Stavric,et al.  Evaluation of hamburgers and hot dogs for the presence of mutagens. , 1995, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[45]  P. Bottomley,et al.  Non-invasive magnetic-resonance detection of creatine depletion in non-viable infarcted myocardium , 1998, The Lancet.

[46]  T. Watanabe,et al.  Changes in serum levels of creatol and methylguanidine in renal injury induced by lipid peroxide produced by vitamin E deficiency and GSH depletion in rats. , 1997, Nephron.

[47]  K. Shimoi,et al.  Food-derived heterocyclic amines potentiate the mutagenicity of a drinking water mutagen 3-chloro-4-(dichloromethyl)-5-hydroxy-2(5H)-furanone (MX). , 1997, Mutation research.

[48]  E. Eichler,et al.  Duplication of a gene-rich cluster between 16p11.1 and Xq28: a novel pericentromeric-directed mechanism for paralogous genome evolution. , 1996, Human molecular genetics.

[49]  H. Eppenberger,et al.  Creatine Kinase Isoenzymes in Chicken Cerebellum: Specific Localization of Brain‐type Creatine Kinase in Bergmann Glial Cells and Muscle‐type Creatine Kinase in Purkinje Neurons , 1994, The European journal of neuroscience.

[50]  M. C. Archer,et al.  Carcinogenicity of nitrosation products of ephedrine, sarcosine, folic acid, and creatinine. , 1975, Cancer research.

[51]  J. Gustafsson,et al.  Influence of creatine, amino acids and water on the formation of the mutagenic heterocyclic amines found in cooked meat. , 1989, Carcinogenesis.

[52]  M. S. Chapman,et al.  Transition state structure of arginine kinase: implications for catalysis of bimolecular reactions. , 1998, Proceedings of the National Academy of Sciences of the United States of America.

[53]  P. Carlier,et al.  Myocardial protection during ischemia by prior feeding with the creatine analog: cyclocreatine. , 1989, Journal of the American College of Cardiology.

[54]  D. Constantin-Teodosiu,et al.  Creatine ingestion favorably affects performance and muscle metabolism during maximal exercise in humans. , 1996, The American journal of physiology.

[55]  M. Knize,et al.  Formation of mutagenic activity from amino acids heated at cooking temperatures. , 1994, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[56]  K T Bogen,et al.  Cancer risk of heterocyclic amines in cooked foods: an analysis and implications for research. , 1995, Carcinogenesis.

[57]  L. Hagenfeldt,et al.  Creatine treatment in MELAS. , 1994, Muscle & nerve.

[58]  J. Ingwall,et al.  Energetic basis for reduced contractile reserve in isolated rat hearts. , 1996, The American journal of physiology.

[59]  H. Happe,et al.  In situ hybridization analysis of CHOT1, a creatine transporter, in the rat central nervous system , 1995, The Journal of comparative neurology.

[60]  J. Walls,et al.  Regulation of intracellular creatine in erythrocytes and myoblasts: Influence of uraemia and inhibition of Na, K‐ATPase , 1994, Cell biochemistry and function.

[61]  T. Yokozawa,et al.  Studies on the precursor of methylguanidine in rats with renal failure. , 1991, Nephron.

[62]  G. Xue,et al.  Carnitine and creatine content of tissues of normal and alloxan-diabetic sheep and rats. , 1983, Comparative biochemistry and physiology. B, Comparative biochemistry.

[63]  T. Wong Studies on creatine determination by α-naphthol-diacetyl reaction. , 1971 .

[64]  Y. Okada,et al.  Effects of accumulation of phosphocreatine on the survival time of thin hippocampal slices from the guinea pig during deprivation of both oxygen and glucose , 1983, Neuroscience Letters.

[65]  S. Akamatsu,et al.  Bacterial decomposition of creatinine; I. Creatinomutase. , 1951, Enzymologia.

[66]  H. Berlet,et al.  Occurrence of free creatine, phosphocreatine and creatine phosphokinase in adipose tissue. , 1976, Biochimica et biophysica acta.

[67]  T. Wallimann,et al.  Mitochondrial intermembrane inclusion bodies: the common denominator between human mitochondrial myopathies and creatine depletion, due to impairment of cellular energetics. , 1997 .

[68]  H. Hippe,et al.  Creatinine deiminase (EC 3.5.4.21) from bacterium BN11: purification, properties and applicability in a serum/urine creatinine assay. , 1991, Clinica chimica acta; international journal of clinical chemistry.

[69]  F. Haddad,et al.  Interaction of chronic creatine depletion and muscle unloading: effects on postural locomotor muscles. , 1994, Journal of applied physiology.

[70]  E Jüngling,et al.  Free energy change of ATP-hydrolysis: a causal factor of early hypoxic failure of the myocardium? , 1982, Journal of molecular and cellular cardiology.

[71]  W. S. Fillers,et al.  Phosphocreatine, an intracellular high-energy compound, is found in the extracellular fluid of the seminal vesicles in mice and rats. , 1988, Proceedings of the National Academy of Sciences of the United States of America.

[72]  A. Bershadsky,et al.  Microtubule dynamics: mechanism, regulation, and function. , 1991, Annual review of cell biology.

[73]  D. Smee,et al.  Cyclocreatine (1-carboxymethyl-2-iminoimidazolidine) inhibits the replication of human herpes viruses. , 1994, Antiviral research.

[74]  G. Xue,et al.  Methyl group metabolism in sheep. , 1987, Comparative biochemistry and physiology. B, Comparative biochemistry.

[75]  C. Bonsett,et al.  The dystrophin connection--ATP? , 1992, Medical hypotheses.

[76]  Johnny Staepels,et al.  Fully Enzymatic Colorimetric Assay of Serum and Urine Creatinine Which Obviates the Need for Sample Blank Measurements , 1988 .

[77]  D. Jenssen,et al.  Site specificity of N-methyl-N-nitrosourea-induced transition mutations in the hprt gene. , 1991, Carcinogenesis.

[78]  J. Barthélémy,et al.  Energetic status and mitochondrial oxidative capacity of rat skeletal muscle in response to creatine analogue ingestion. , 1995, Biochimica et biophysica acta.

[79]  A. Sanbe,et al.  Effects of long-term therapy with ACE inhibitors, captopril, enalapril and trandolapril, on myocardial energy metabolism in rats with heart failure following myocardial infarction. , 1995, Journal of molecular and cellular cardiology.

[80]  P. Greenhaff,et al.  The effect of oral creatine supplementation on running performance during maximal short term exercis , 1993 .

[81]  B. Shapiro,et al.  Metabolite channeling: A phosphorylcreatine shuttle to mediate high energy phosphate transport between sperm mitochondrion and tail , 1985, Cell.

[82]  I. Sipilä Inhibition of arginine-glycine amidinotransferase by ornithine. A possible mechanism for the muscular and chorioretinal atrophies in gyrate atrophy of the choroid and retina with hyperornithinemia. , 1980, Biochimica et biophysica acta.

[83]  P. van Hecke,et al.  Long-term creatine intake is beneficial to muscle performance during resistance training. , 1997, Journal of applied physiology.

[84]  M. Knize,et al.  Effects of marinating on heterocyclic amine carcinogen formation in grilled chicken. , 1997, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[85]  H. Ogawa,et al.  Guanidoacetate methyltransferase from rat liver: purification, properties, and evidence for the involvement of sulfhydryl groups for activity. , 1983, Archives of biochemistry and biophysics.

[86]  J. Holloszy,et al.  Adaptation of muscle to creatine depletion: effect on GLUT-4 glucose transporter expression. , 1993, The American journal of physiology.

[87]  K. Miyoshi,et al.  Abnormalities of Creatinase in Skeletal Muscle of Patients with Duchenne Muscular Dystrophy , 1980 .

[88]  P. Kaldis,et al.  'Hot spots' of creatine kinase localization in brain: cerebellum, hippocampus and choroid plexus. , 1996, Developmental neuroscience.

[89]  J. Lowe,et al.  Changes in plasma and muscle creatine concentration after increases in supplementary dietary creatine in dogs. , 1998, The Journal of nutrition.

[90]  H. Mizusawa,et al.  Histological determination of nitric oxide synthase (NOS) and NADPH-diaphorase in ragged-red fibers from patients with mitochondrial encephalomyopathies , 1997, Journal of the Neurological Sciences.

[91]  C. D. Fitch,et al.  Inhibition of creatine and phosphocreatine accumulation in skeletal muscle and heart. , 1980, Metabolism: clinical and experimental.

[92]  M. Toyota,et al.  Genetic alterations in rat colon tumors induced by heterocyclic amines , 1996, Cancer.

[93]  R H Adamson,et al.  Mutagenic activation of IQ, PhIP and MeIQx by hepatic microsomes from rat, monkey and man: low mutagenic activation of MeIQx in cynomolgus monkeys in vitro reflects low DNA adduct levels in vivo. , 1993, Carcinogenesis.

[94]  I. Tabata,et al.  Non-insulin and non-exercise related increase of glucose utilization in rats and mice. , 1994, The Japanese journal of physiology.

[95]  M. Gross,et al.  Multiple forms of rat kidney L-arginine:glycine amidinotransferase. , 1988, The Journal of nutrition.

[96]  H. Ohgaki,et al.  Carcinogenicities of heterocyclic amines in cooked food. , 1991, Mutation research.

[97]  S. Tsung Creatine kinase activity and isoenzyme pattern in various normal tissues and neoplasms. , 1983, Clinical chemistry.

[98]  J. Gray,et al.  Meat mutagens. , 1990, Advances in food and nutrition research.

[99]  E. Austin,et al.  A first step in the development of gene therapy for colorectal carcinoma: cloning, sequencing, and expression of Escherichia coli cytosine deaminase. , 1993, Molecular pharmacology.

[100]  J. Ingwall Whole-organ enzymology of the creatine kinase system in heart. , 1991, Biochemical Society transactions.

[101]  H. Betz,et al.  The putative rat choline transporter CHOT1 transports creatine and is highly expressed in neural and muscle-rich tissues. , 1994, Biochemical and biophysical research communications.

[102]  S. Dimauro,et al.  Mitochondrial encephalomyopathies. , 1989, Progress in clinical and biological research.

[103]  K. Turteltaub,et al.  Chemical analysis, prevention, and low-level dosimetry of heterocyclic amines from cooked food. , 1992, Cancer research.

[104]  Hiromitsu Watanabe,et al.  Lack of Any Positive Effect of Intestinal Metaplasia on Induction of Gastric Tumors in Wistar Rats Treated with N‐Methyl‐N‐nitrosourea in Their Drinking Water , 1994, Japanese journal of cancer research : Gann.

[105]  R. Goldman,et al.  Creatine Synthesis After Creatinine Loading and After Nephrectomy.∗ , 1960, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.

[106]  B. Burt‐Pichat,et al.  Variations of muscle mitochondrial creatine kinase activity in mitochondrial diseases. , 1996, Biochimica et biophysica acta.

[107]  K. Skog,et al.  Cooking procedures and food mutagens: a literature review. , 1993, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[108]  G. Balboni,et al.  On the control of arginine metabolism in chicken kidney and liver. , 1975, European journal of biochemistry.

[109]  W. Dyszkiewicz,et al.  Energy state of the myocardium during long-term cold storage and subsequent reperfusion. , 1988, European journal of cardio-thoracic surgery : official journal of the European Association for Cardio-thoracic Surgery.

[110]  M. Gross,et al.  Localization of L-arginine-glycine amidinotransferase protein in rat tissues by immunofluorescence microscopy. , 1986, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.

[111]  M. Kushmerick,et al.  Administration of a creatine analogue induces isomyosin transitions in muscle. , 1989, The American journal of physiology.

[112]  M. B. Laskowski,et al.  Biochemical and ultrastructural changes in skeletal muscle induced by a creatine antagonist. , 1981, Metabolism: clinical and experimental.

[113]  O. Simell,et al.  Gyrate atrophy of the choroid and retina with hyperornithinemia. Deficient formation of guanidinoacetic acid from arginine. , 1980, The Journal of clinical investigation.

[114]  S. Ogawa,et al.  Hypoxia induces glucose transporter expression in endothelial cells. , 1992, The American journal of physiology.

[115]  G. C. Stephens,et al.  Distribution of creatine, guanidinoacetate and the enzymes for their biosynthesis in the animal kingdom. Implications for phylogeny. , 1972, The Biochemical journal.

[116]  B. Leijnse,et al.  The conversion of creatinine by creatininase of bacterial origin. , 1968, Enzymologia.

[117]  D. Simmons,et al.  Mouse p53 represses the rat brain creatine kinase gene but activates the rat muscle creatine kinase gene , 1994, Molecular and cellular biology.

[118]  W. Dillmann,et al.  Ischemia Induces Changes in the Level of mRNAs Coding for Stress Protein 71 and Creatine Kinase M , 1988, Circulation research.

[119]  J. Beckmann,et al.  Mapping of a chromosome 15 region involved in limb girdle muscular dystrophy. , 1994, Human molecular genetics.

[120]  L. Ploutz-Snyder,et al.  Energy-rich phosphates in slow and fast human skeletal muscle. , 1995, The American journal of physiology.

[121]  O. Simell,et al.  Gyrate atrophy of the choroid and retina with hyperornithinemia , 1979, Neurology.

[122]  G. Magni,et al.  Baker's yeast cytosine deaminase. Some enzymic properties and allosteric inhibition by nucleosides and nucleotides. , 1971, Biochemistry.

[123]  S. Bermon,et al.  Effects of creatine monohydrate ingestion in sedentary and weight-trained older adults. , 1998, Acta physiologica Scandinavica.

[124]  R. Huber,et al.  Enzymatic mechanism of creatine amidinohydrolase as deduced from crystal structures. , 1990, Journal of molecular biology.

[125]  P. D. De Deyn,et al.  Effect of ammonium acetate-induced hyperammonemia on metabolism of guanidino compounds. , 1991, Biochemical medicine and metabolic biology.

[126]  T. Sugimura,et al.  Mutagen Formation after Heating of Mixtures of Guanidino Compounds, Amino Acids and Glucose , 1994 .

[127]  A. Forde,et al.  Preliminary Studies on Enzymes of Creatinine Degradation , 1974 .

[128]  F. Gabreëls,et al.  Mitochondrial cytopathy presenting as hereditary sensory neuropathy with progressive external ophthalmoplegia, ataxia and fatal myoclonic epileptic status. , 1996, Brain : a journal of neurology.

[129]  T. Tanaka,et al.  Energy metabolism after ischemic preconditioning in streptozotocin-induced diabetic rat hearts. , 1998, Journal of the American College of Cardiology.

[130]  K. Jung,et al.  Specific Creatinine Determination in Laboratory Animals Using the New Enzymatic Test Kit “Creatinine-PAP” , 1987, Journal of clinical chemistry and clinical biochemistry. Zeitschrift fur klinische Chemie und klinische Biochemie.

[131]  G Cederblad,et al.  Muscle creatine loading in men. , 1996, Journal of applied physiology.

[132]  B. Chance,et al.  The beneficial effect of phosphocreatine accumulation in the creatine kinase transgenic mouse liver in endotoxin-induced hepatic cell death. , 1998, The Journal of surgical research.

[133]  B. Chance,et al.  Energy metabolism and regeneration in transgenic mouse liver expressing creatine kinase after major hepatectomy. , 1996, Gastroenterology.

[134]  J. L. Swain,et al.  Disruption of myofibrillar energy use: dual mechanisms that may contribute to postischemic dysfunction in stunned myocardium. , 1987, Circulation research.

[135]  M. M. Daly Guanidinoacetate methyltransferase activity in tissues and cultured cells. , 1984, Archives of biochemistry and biophysics.

[136]  B. R. Madan,et al.  Studies on the anti-inflammatory activity of creatine. , 1978, Archives internationales de pharmacodynamie et de therapie.

[137]  S. Horikawa,et al.  Methylguanidine synthase from rat kidney is identical to long-chain L-2-hydroxy acid oxidase. , 1994, Nephron.

[138]  I. Mujika,et al.  Creatine Supplementation as an Ergogenic Aid for Sports Performance in Highly Trained Athletes: A Critical Review , 1997, International journal of sports medicine.

[139]  H. Ohgaki,et al.  Mutagens and carcinogens in cooked food. , 1986, Progress in clinical and biological research.

[140]  T. Sugimura,et al.  Rat p53 gene mutations in primary Zymbal gland tumors induced by 2-amino-3-methylimidazo[4,5-f]quinoline, a food mutagen. , 1992, Proceedings of the National Academy of Sciences of the United States of America.

[141]  M. Nagao,et al.  Chromosome aberrations induced in mice by chronic feeding of 2-amino-3,4-dimethylimidazo[4,5-f]quinoline (MeIQ). , 1998, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[142]  A. Heerschap,et al.  Use of gene targeting for compromising energy homeostasis in neuro-muscular tissues: The role of sarcomeric mitochondrial creatine kinase , 1997, Journal of Neuroscience Methods.

[143]  S. Giovannetti,et al.  Evidence that guanidines and some related compounds cause haemolysis in chronic uraemia. , 1968, Clinical science.

[144]  A. Nadeau,et al.  Physical training attenuates phosphocreatine and long-chain acyl-CoA alterations in diabetic rat heart. , 1993, Journal of applied physiology.

[145]  P. Deyn,et al.  Guanidino Compound Analysis as a Complementary Diagnostic Parameter for Hyperargininemia: Follow-Up of Guanidino Compound Levels during Therapy , 1990, Pediatric Research.

[146]  Bandaru S. Reddy,et al.  Inhibitory effect of Bifidobacterium longum on colon, mammary, and liver carcinogenesis induced by 2-amino-3-methylimidazo[4,5-f]quinoline, a food mutagen. , 1993, Cancer research.

[147]  E. Grazi,et al.  TRANSAMIDINASE OF HOG KIDNEY. I. PURIFICATION AND PROPERTIES. , 1965, The Journal of biological chemistry.

[148]  J. Zweier,et al.  Bioenergetic consequences of cardiac phosphocreatine depletion induced by creatine analogue feeding. , 1991, The Journal of biological chemistry.

[149]  D. Waters,et al.  Comparison of cardiac troponin I, creatine kinase-MB, and myoglobin for detection of acute ischemic myocardial injury in a swine model. , 1998, American journal of clinical pathology.

[150]  Robert W. Teel,et al.  The effects of capsaicin on the metabolic activation of heterocyclic amines and on cytochrome P450 1A2 activity in hamster liver microsomes , 1997 .

[151]  R. Wahman,et al.  Creatine and creatinine in the carcass and urine of normal and vitamin E-deficient rabbits. , 1960, The Journal of biological chemistry.

[152]  Garth,et al.  Accumulation of Analog of Phosphocreatine in Muscle of Chicks Fed l-Carboxymethyl-2-iminoimidazolidine (Cyclocreatine)” , 2002 .

[153]  L. Dell’Italia,et al.  Selective induction of the creatine kinase-B gene in chronic volume overload hypertrophy is not affected by ACE-inhibitor therapy. , 1997, Journal of molecular and cellular cardiology.

[154]  T. Inubushi,et al.  Lateralized abnormality of high-energy phosphate and bilateral reduction of phosphomonoester measured by phosphorus-31 magnetic resonance spectroscopy of the frontal lobes in schizophrenia , 1995, Psychiatry Research: Neuroimaging.

[155]  F. Savabi Mitochondrial creatine phosphokinase deficiency in diabetic rat heart. , 1988, Biochemical and biophysical research communications.

[156]  F. Ohashi,et al.  Plasma methylguanidine and creatinine concentrations in cats with experimentally induced acute renal failure. , 1995, The Journal of veterinary medical science.

[157]  C. Azushima [Guanidino compounds in various tissues of the rats with chronic or acute renal failure]. , 1985, Nihon Jinzo Gakkai shi.

[158]  J. Ingwall,et al.  Enalapril treatment increases cardiac performance and energy reserve via the creatine kinase reaction in myocardium of Syrian myopathic hamsters with advanced heart failure. , 1995, Circulation.

[159]  K. Okumura,et al.  Isoenzyme profiles of creatine kinase, lactate dehydrogenase, and aspartate aminotransferase in the diabetic heart: comparison with hereditary and catecholamine cardiomyopathies. , 1990, Cardiovascular research.

[160]  Joseph F. Clark,et al.  Creatine and Creatine Phosphate: Scientific and Clinical Perspectives , 1996 .

[161]  N. Kurihara,et al.  Formation of PhIP in a mixture of creatinine, phenylalanine and sugar or aldehyde by aqueous heating. , 1992, Carcinogenesis.

[162]  Oliver Bendel H , 1955, 2020/2021.

[163]  G J Barker,et al.  Proton magnetic resonance spectroscopy: an in vivo method of estimating hippocampal neuronal depletion in schizophrenia , 1995, Psychological Medicine.

[164]  P. Magee,et al.  The induction of tumours in the rat by a single oral dose of N-nitrosomethylurea. , 1969, British Journal of Cancer.

[165]  K. Brocklehurst,et al.  Clenbuterol is not an agonist of Na+ dependent creatine transport. , 1996, Biochemical Society transactions.

[166]  M. Febbraio,et al.  Effect of creatine supplementation on intramuscular TCr, metabolism and performance during intermittent, supramaximal exercise in humans. , 1995, Acta physiologica Scandinavica.

[167]  M. Rovetto,et al.  Effects of ischemia on function and metabolism of the isolated working rat heart. , 1973, The American journal of physiology.

[168]  R. Vale,et al.  Identification of katanin, an ATPase that severs and disassembles stable microtubules , 1993, Cell.

[169]  A. Koretsky,et al.  Differential effects of creatine kinase isoenzymes and substrates on regeneration in livers of transgenic mice. , 1997, The American journal of physiology.

[170]  P. Sears,et al.  Capillary electrophoretic measurement of tissue metabolites. , 1998, American journal of physiology. Cell physiology.

[171]  S. Javadov,et al.  Quantitative evaluation of relationship between cardiac energy metabolism and post-ischemic recovery of contractile function. , 1989, Journal of molecular and cellular cardiology.

[172]  R. Meyer,et al.  Creatinine assay by the fuller's earth procedure or by enzymatic determination is adequate for urine but not plasma of mice. , 1993, Comparative biochemistry and physiology. B, Comparative biochemistry.

[173]  S. Rapoport,et al.  Creatine in red cells: transport and erythropoietic dynamics. , 1981, Acta biologica et medica Germanica.

[174]  B. Lorell,et al.  Failure to maintain a low ADP concentration impairs diastolic function in hypertrophied rat hearts. , 1997, Circulation.

[175]  M. Dalakas,et al.  Mitochondrial toxicity of antiviral drugs , 1995, Nature Medicine.

[176]  H. Koide,et al.  Intranephron distribution of glycine-amidinotransferase activity in rats. , 1992, Renal physiology and biochemistry.

[177]  T. Brown,et al.  Phosphagen and intracellular pH changes during contraction of creatine-depleted rat muscle. , 1986, The American journal of physiology.

[178]  T. Wallimann,et al.  Creatine kinase: the reactive cysteine is required for synergism but is nonessential for catalysis. , 1993, Biochemistry.

[179]  C. Higgins,et al.  Verapamil preserves myocardial performance and energy metabolism in left ventricular hypertrophy following ischemia and reperfusion. Phosphorus 31 magnetic resonance spectroscopy study. , 1989, Circulation.

[180]  C. Storey,et al.  Phosphate free perfusion prevents washout of tissue creatine in Langendorff perfused rabbit heart. , 1992, Biochemistry international.

[181]  W. Donnelly,et al.  Creatinine amidohydrolase: Some properties of the partially purified and purified enzyme , 1977 .

[182]  C. V. Hoogenhuyze,et al.  Beobachtungen über die Kreatininausscheidung beim Menschen. Mit 1 Abbildung im Text und 7 Tafeln , 1905 .

[183]  J. Ingwall,et al.  Regional changes in creatine kinase and myocyte size in hypertensive and nonhypertensive cardiac hypertrophy. , 1990, Circulation research.

[184]  V A Saks,et al.  Creatine kinase of heart mitochondria: changes in its kinetic properties induced by coupling to oxidative phosphorylation. , 1982, Archives of biochemistry and biophysics.

[185]  R. B. Young,et al.  Effect of creatine on contents of myosin heavy chain and myosin-heavy-chain mRNA in steady-state chicken muscle-cell cultures. , 1984, The Biochemical journal.

[186]  J. Balligand,et al.  Nitric oxide inhibits creatine kinase and regulates rat heart contractile reserve. , 1996, Proceedings of the National Academy of Sciences of the United States of America.

[187]  A. Koretsky,et al.  Combined myofibrillar and mitochondrial creatine kinase deficiency impairs mouse diaphragm isotonic function. , 1997, Journal of applied physiology.

[188]  T. Yokozawa,et al.  Effects of creatinine, creatol and methylguanidine on renal function. , 1992, Nihon Jinzo Gakkai shi.

[189]  J. Pettegrew,et al.  Alterations of cerebral metabolism in probable Alzheimer's disease: A preliminary study , 1994, Neurobiology of Aging.

[190]  K. Gempel,et al.  Mitochondria and Diabetes: Genetic, Biochemical, and Clinical Implications of the Cellular Energy Circuit , 1996, Diabetes.

[191]  C. H. Fiske,et al.  THE NATURE OF THE "INORGANIC PHOSPHATE" IN VOLUNTARY MUSCLE. , 1927, Science.

[192]  Day Pl,et al.  Creatinuria during recovery from aminopterin-induced folic acid deficiency in the monkey. , 1949 .

[193]  Intracellular alterations of the creatine kinase isoforms in brains of schizophrenic patients. , 1991, Molecular and chemical neuropathology.

[194]  C. Owens,et al.  In vitro metabolism of creatinine, methylamine and amino acids by intestinal contents of normal and uraemic subjects. , 1979, Gut.

[195]  Mutagenicity of food pellets from human diets in The Netherlands. , 1988, Mutation research.

[196]  L. F. Chasseaud,et al.  The effect of intravenously administered phosphocreatine on ATP and phosphocreatine concentrations in the cardiac muscle of the rat. , 1983, Arzneimittel-Forschung.

[197]  L. W. Statius van Eps,et al.  Evaluative and comparative study of an enzymatic method using creatine kinase for the determination of urinary creatine. , 1984, Clinica chimica acta; international journal of clinical chemistry.

[198]  B. Azzarelli,et al.  Adult‐onset of nemaline myopathy, associated with cores and abnormal mitochondria , 1994, Muscle & nerve.

[199]  F. Hatch,et al.  Structural and quantum chemical factors affecting mutagenic potency of aminoimidazo‐azaarenes , 1996, Environmental and molecular mutagenesis.

[200]  E. Fossel,et al.  Complete inhibition of creatine kinase in isolated perfused rat hearts. , 1987, The American journal of physiology.

[201]  R. Lenkinski,et al.  High spatial resolution MRI and proton MRS of human frontal cortex , 1996, NMR in biomedicine.

[202]  C. Junien,et al.  Isolation of kidney complementary DNAs down-expressed in Wilms' tumor by a subtractive hybridization approach. , 1993, Cancer research.

[203]  K. Campbell,et al.  Iron effects on myocardial enzymes depend on redox state. , 1994, Journal of molecular and cellular cardiology.

[204]  F. H. Tyler,et al.  Studies in disorders of muscle. X. The site of creatine synthesis in the human. , 1953, Metabolism: clinical and experimental.

[205]  E. Bergamini,et al.  The induction of mitochondrial myopathy in the rat by feeding beta-guanidinopropionic acid and the reversibility of the induced mitochondrial lesions: a biochemical and ultrastructural investigation. , 1993, International journal of experimental pathology.

[206]  H. Nishino,et al.  3-Nitropropionic Acid Increases the Intracellular Ca2+in Cultured Astrocytes by Reverse Operation of the Na+–Ca2+Exchanger , 1997, Experimental Neurology.

[207]  C. Cooper,et al.  Chemical Carcinogenesis and Mutagenesis I , 1990, Handbook of Experimental Pharmacology.

[208]  Robert J. Zeleznikar,et al.  Adenylate kinase: Kinetic behavior in intact cells indicates it is integral to multiple cellular processes , 1998 .

[209]  H. Yamada,et al.  Amidohydrolysis of N-methylhydantoin coupled with ATP hydrolysis. , 1987, Biochemical and biophysical research communications.

[210]  K. Bloch,et al.  Studies in protein metabolism. 11. The metabolic relation of creatine and creatinine studied with isotopic nitrogen. , 1939 .

[211]  A. Minajeva,et al.  Nitric oxide inhibits cardiac energy production via inhibition of mitochondrial creatine kinase , 1999, FEBS letters.

[212]  G. Gerton,et al.  Creatine synthesis and transport systems in the male rat reproductive tract. , 1998, Biology of reproduction.

[213]  R. Sinha,et al.  High concentrations of the carcinogen 2-amino-1-methyl-6-phenylimidazo- [4,5-b]pyridine (PhIP) occur in chicken but are dependent on the cooking method. , 1995, Cancer research.

[214]  K. Yasunaga,et al.  Clinical test of renal guanidinoacetic acid metabolism by oral citrulline and creatine loading. , 1992, Clinica chimica acta; international journal of clinical chemistry.

[215]  D. Pyne,et al.  Effect of oral creatine supplementation on single-effort sprint performance in elite swimmers. , 1996, International journal of sport nutrition.

[216]  R. Sorrentino,et al.  Effect of methylguanidine on rat blood pressure: role of endothelial nitric oxide synthase , 1995, British journal of pharmacology.

[217]  N. Madias,et al.  Serum creatinine as an index of renal function: new insights into old concepts. , 1992, Clinical chemistry.

[218]  Y. Ohira,et al.  Non-Exercise-Related Stimulation of Mitochondrial Protein Synthesis in Creatine-Depleted Rats1 , 1992 .

[219]  C. Moos,et al.  Pyrophosphate contamination in crystalline phosphocreatine: a source of error in kinetic studies using coupled enzymes. , 1978, Analytical biochemistry.

[220]  M. Balestrino,et al.  Exogenous creatine delays anoxic depolarization and protects from hypoxic damage: dose–effect relationship , 1999, Brain Research.

[221]  J. McCord,et al.  Mitochondrial Injury by Ischemia and Reperfusion , 1994 .

[222]  J. Willerson,et al.  Influence of volume dilution, lactate, phosphate, and calcium on mitochondrial functions. , 1979, The American journal of physiology.

[223]  T. Wallimann,et al.  In vivo brain phosphocreatine and ATP regulation in mice fed a creatine analog. , 1997, The American journal of physiology.

[224]  H. Eppenberger,et al.  High content of creatine kinase in chicken retina: compartmentalized localization of creatine kinase isoenzymes in photoreceptor cells. , 1986, Proceedings of the National Academy of Sciences of the United States of America.

[225]  R. Buck,et al.  Miniaturized biosensors employing electropolymerized permselective films and their use for creatine assays in human serum. , 1996, Analytical chemistry.

[226]  J. Sassard,et al.  Alteration of cardiac energy state during development of hypertension in rats of the Lyon strain: a 31P-NMR study on the isolated rat heart. , 1993, Acta physiologica Scandinavica.

[227]  G. Ghiggeri,et al.  Effects of hemodialysis on guanidinopropionic acid metabolism. , 1986, Nephron.

[228]  O. Simell,et al.  Supplementary creatine as a treatment for gyrate atrophy of the choroid and retina. , 1981, The New England journal of medicine.

[229]  D. Cuthbertson Creatine and Creatinine Metabolism , 1944, Nature.

[230]  A. Sreenivasan,et al.  Influence of Folic Acid and Vitamin B12 on Formation of Creatine in vitro and in vivo , 1951, Nature.

[231]  P. Landfield,et al.  Brain Creatine Kinase with Aging in F-344 Rats: Analysis by Saturation Transfer Magnetic Resonance Spectroscopy , 1997, Neurobiology of Aging.

[232]  A. Wu Creatine kinase isoforms in ischemic heart disease. , 1989, Clinical chemistry.

[233]  L. Wexler,et al.  Enhanced Sensitivity to Hypoxia‐Induced Diastolic Dysfunction in Pressure‐Overload Left Ventricular Hypertrophy in the Rat: Role of High‐Energy Phosphate Depletion , 1988, Circulation research.

[234]  E. Presedo Complicated migraine studied by phosphorus magnetic resonance spectroscopy. , 1991, Cephalalgia : an international journal of headache.

[235]  M. Weisfeldt,et al.  Creatine kinase of heart mitochondria. The progressive loss of enzyme activity during in vivo ischemia and its correlation to depressed myocardial function. , 1985, The Journal of biological chemistry.

[236]  I. Macdonald,et al.  Carbohydrate ingestion augments skeletal muscle creatine accumulation during creatine supplementation in humans. , 1996, The American journal of physiology.

[237]  M. Rudin,et al.  Determination of creatine kinase kinetic parameters in rat brain by NMR magnetization transfer. Correlation with brain function. , 1993, The Journal of biological chemistry.

[238]  C. Earnest,et al.  Effect of oral creatine ingestion on parameters of the work rate-time relationship and time to exhaustion in high-intensity cycling , 1998, European Journal of Applied Physiology and Occupational Physiology.

[239]  F. Booth,et al.  Molecular and cellular adaptation of muscle in response to exercise: perspectives of various models. , 1991, Physiological reviews.

[240]  R. Connett,et al.  Analysis of metabolic control: new insights using scaled creatine kinase model. , 1988, The American journal of physiology.

[241]  G. Radda,et al.  Exercise metabolism in Duchenne muscular dystrophy: a biochemical and [31P]-nuclear magnetic resonance study of mdx mice , 1993, Proceedings of the Royal Society of London. Series B: Biological Sciences.

[242]  T. Yoshimi,et al.  Recombinant rat guanidinoacetate methyltransferase: Study of the structure by trace labeling lysine residues with acetic anhydride , 1990 .

[243]  H. Ågren,et al.  Brain energy metabolism and blood-brain barrier permeability in depressive patients: analyses of creatine, creatinine, urate, and albumin in CSF and blood. , 1984, Biological psychiatry.

[244]  S. Shimizu,et al.  Sarcosine Oxidase Involved in Creatinine Degradation in Alcaligenes denitrificans subsp. denitrificans J9 and Arthrobacter spp. J5 and J11 , 1986 .

[245]  T. J. Wheeler,et al.  Creatine phosphate inhibition of adenylate deaminase is mainly due to pyrophosphate. , 1979, The Journal of biological chemistry.

[246]  W. Mitch,et al.  Creatinine metabolism in chronic renal failure. , 1980, Clinical science.

[247]  M. Gross,et al.  The purification and characterization of human kidney L-arginine:glycine amidinotransferase. , 1986, Archives of biochemistry and biophysics.

[248]  A. Poustka,et al.  The genomic organization of a human creatine transporter (CRTR) gene located in Xq28. , 1996, Genomics.

[249]  Jullie W Pan,et al.  Evaluation of multiple sclerosis by 1H spectroscopic imaging at 4.1 T , 1996, Magnetic resonance in medicine.

[250]  G. Fein,et al.  Biochemical alterations in multiple sclerosis lesions and normal‐appearing white matter detected by in vivo 31P and 1H spectroscopic imaging , 1994, Annals of neurology.

[251]  H. Mikami,et al.  Metabolic pathway of guanidino compounds in chronic renal failure. , 1982, Advances in experimental medicine and biology.

[252]  S D Davilla,et al.  Real‐time quantitative elemental analysis and mapping: microchemical imaging in cell physiology , 1992, Journal of microscopy.

[253]  P. Eggleton,et al.  The Inorganic Phosphate and a Labile Form of Organic Phosphate in the Gastrocnemius of the Frog. , 1927, The Biochemical journal.

[254]  J M Land,et al.  Nitric Oxide‐Mediated Mitochondrial Damage in the Brain: Mechanisms and Implications for Neurodegenerative Diseases , 1997, Journal of neurochemistry.

[255]  G. Adams,et al.  Effects of creatine loading and training on running performance and biochemical properties of rat skeletal muscle. , 1997, Medicine and science in sports and exercise.

[256]  N Ito,et al.  The prostate: a target for carcinogenicity of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) derived from cooked foods. , 1997, Cancer research.

[257]  C. V. van Echteld,et al.  31P NMR studies of creatine kinase flux in M-creatine kinase-deficient mouse heart. , 1998, The American journal of physiology.

[258]  J. Ramirez,et al.  Creatine Protects the Central Respiratory Network of Mammals under Anoxic Conditions , 1998, Pediatric Research.

[259]  F. Savabi Free creatine available to the creatine phosphate energy shuttle in isolated rat atria. , 1988, Proceedings of the National Academy of Sciences of the United States of America.

[260]  G. Radda,et al.  Modulation of inorganic phosphate uptake into a mouse myoblast cell line by extracellular creatine. , 1993, Biochemical Society transactions.

[261]  K. Maeda,et al.  A new automated analytical method for gaunidino compounds and their cerebrospinal fluid levels in uremia. , 1978, Transactions - American Society for Artificial Internal Organs.

[262]  Theo Wallimann,et al.  Structure of mitochondrial creatine kinase , 1996, Nature.

[263]  M. Collins,et al.  Tissierella creatinophila sp. nov., a gram-positive, anaerobic, non-spore-forming, creatinine-fermenting organism. , 1998, International journal of systematic bacteriology.

[264]  A. Ueda,et al.  Decreased serum antioxidant activity of hemodialysis patients demonstrated by methylguanidine synthesis and microsomal lipid peroxidation. , 1996, Nephron.

[265]  G. Molloy,et al.  Prostaglandin E1, E2, and cholera toxin increase transcription of the brain creatine kinase gene in human U87 glioblastoma cells , 1995, Glia.

[266]  O. Pisarenko,et al.  ASSOCIATION OF PRE‐ISCHAEMIC DISTURBANCES IN ENERGY METABOLISM WITH POSTISCHAEMIC DYSFUNCTION OF THE RAT ISOLATED WORKING HEART , 1998, Clinical and experimental pharmacology & physiology.

[267]  A. Boobis,et al.  Developmental changes in hepatic activation of 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline in rabbit. , 1996, Carcinogenesis.

[268]  E. Monti,et al.  Protective activity of the spin trap tert-bytyl-α-phenyl nitrone (PBN) in reperfused rat heart , 1992 .

[269]  K. Konishi,et al.  Recombinant rat liver guanidinoacetate methyltransferase: reactivity and function of sulfhydryl groups. , 1988, Biochemistry.

[270]  M. Kilimann,et al.  A Na(+)-dependent creatine transporter in rabbit brain, muscle, heart, and kidney. cDNA cloning and functional expression. , 1993, The Journal of biological chemistry.

[271]  A. Boobis,et al.  CYP1A2-catalyzed conversion of dietary heterocyclic amines to their proximate carcinogens is their major route of metabolism in humans. , 1994, Cancer research.

[272]  E Hultman,et al.  Elevation of creatine in resting and exercised muscle of normal subjects by creatine supplementation. , 1992, Clinical science.

[273]  T. Suzuki,et al.  Evolution of phosphagen kinase. Primary structure of glycocyamine kinase and arginine kinase from invertebrates. , 1994, Journal of molecular biology.

[274]  F. Hatch,et al.  Structure‐mutagenicity relationships of four amino‐imidazonaphthyridines and imidazoquinolines , 1995, Environmental and molecular mutagenesis.

[275]  S. Houser,et al.  Enhancement of cardiac function by cyclocreatine in models of cardiopulmonary bypass. , 1995, Journal of molecular and cellular cardiology.

[276]  G. Appleyard,et al.  The pathway of creatine catabolism by Pseudomonas ovalis. , 1956, Journal of general microbiology.

[277]  K. Brand,et al.  Ischemia-induced alterations of mitochondrial structure and function in brain, liver, and heart muscle of young and senescent rats. , 1988, Biochemical medicine and metabolic biology.

[278]  G. Ronquist,et al.  Parasympathetic muscarinic stimulation limits noradrenaline induced myocardial creatine kinase release: a study in the isolated perfused working rat heart. , 1994, Scandinavian journal of clinical and laboratory investigation.

[279]  D. Gomez,et al.  Liver tumors and possible preneoplastic lesions, induced by a food-derived heterocyclic amine in cynomolgus monkeys; a study of histology and cytokeratin expression. , 2008, Liver.

[280]  T. Goto,et al.  The metabolism of 1-methylhydantoin via 5-hydroxy-1-methylhydantoin in mammals. , 1988, Biochimica et biophysica acta.

[281]  J. Ingwall,et al.  Creatine kinase system in failing and nonfailing human myocardium. , 1996, Circulation.

[282]  D. J. Hayes,et al.  Biochemical adaptation in the skeletal muscle of rats depleted of creatine with the substrate analogue beta-guanidinopropionic acid. , 1985, The Biochemical journal.

[283]  G Helms,et al.  Creatine Deficiency in the Brain: A New, Treatable Inborn Error of Metabolism , 1994, Pediatric Research.

[284]  C. V. van Echteld,et al.  31P NMR studies of creatine kinase flux in M-creatine kinase-deficient mouse heart. , 1998, American journal of physiology. Heart and circulatory physiology.

[285]  A. Dörner,et al.  Adenine nucleotide translocator in dilated cardiomyopathy: pathophysiological alterations in expression and function. , 1997 .

[286]  A. Chanutin THE FATE OF CREATINE WHEN ADMINISTERED TO MAN , 1926 .

[287]  G. Loo,et al.  Creatine metabolism in the pyridoxine-deficient rat. , 1986, The Journal of nutrition.

[288]  H. Beard,et al.  Creatinase activity of a strain of Pseudomonas. , 1947, Archives of biochemistry.

[289]  R. K. Miller,et al.  Materno-fetal transport of creatine in the rat. , 1978, Biology of the neonate.

[290]  E. Garrido,et al.  Creatine supplementation does not improve physical performance in a 150 m race. , 1997, Revista espanola de fisiologia.

[291]  M. Perryman,et al.  Compartmentation of multiple forms of creatine kinase in the distal nephron of the rat kidney. , 1991, The Journal of biological chemistry.

[292]  F. Plum,et al.  CEREBRAL ENERGY METABOLISM DURING EXPERIMENTAL STATUS EPILEPTICUS 1 , 1975, Advances in neurology.

[293]  P. Hespel,et al.  Shortening of muscle relaxation time after creatine loading. , 1999, Journal of applied physiology.

[294]  M. Murphy,et al.  Peroxynitrite: a biologically significant oxidant. , 1998, General pharmacology.

[295]  Jens Frahm,et al.  Creatine replacement therapy in guanidineoacetate methyltransferase deficiency, a novel inborn error of metabolism , 1996, The Lancet.

[296]  V. Fischer,et al.  Thyrotoxic myopathy in mice: accentuation by a creatine transport inhibitor. , 1986, Metabolism: clinical and experimental.

[297]  J. Lillie,et al.  Cyclocreatine (1-carboxymethyl-2-iminoimidazolidine) inhibits growth of a broad spectrum of cancer cells derived from solid tumors. , 1993, Cancer research.

[298]  M. Frank,et al.  Changes of creatine kinase gene expression in rat heart post-myocardial infarction. , 1998, Journal of molecular and cellular cardiology.

[299]  M. Dobrzyńska,et al.  Modulating effects of flavonoids on food mutagens in human blood and sperm samples in the comet assay. , 1997, Teratogenesis, carcinogenesis, and mutagenesis.

[300]  R. Tukey,et al.  Metabolism of carcinogenic heterocyclic and aromatic amines by recombinant human cytochrome P450 enzymes. , 1997, Carcinogenesis.

[301]  K. Shyu,et al.  Cardiac troponin T, creatine kinase, and its isoform release after successful percutaneous transluminal coronary angioplasty with or without stenting. , 1998, American heart journal.

[302]  A. Koretsky,et al.  Manipulating creatine kinase activity in transgenic mice to study control of energy metabolism. , 1991, Biochemical Society transactions.

[303]  S. Robbana-Barnat,et al.  Heterocyclic amines: occurrence and prevention in cooked food. , 1996, Environmental health perspectives.

[304]  William Rouslin,et al.  Mechanisms of ATP conservation during ischemia in slow and fast heart rate hearts. , 1993, The American journal of physiology.

[305]  A. V. van Zanten,et al.  Interferences in current methods for measurements of creatinine. , 1991, Clinical chemistry.

[306]  P. D. De Deyn,et al.  Epilepsy and the GABA-hypothesis a brief review and some examples. , 1990, Acta neurologica Belgica.

[307]  E. Knoll,et al.  [Enzymatic procedures for determining creatinine]. , 1987, Der Internist.

[308]  O. Levillain,et al.  Renal handling of guanidino compounds in rat and rabbit. , 1997, The Journal of physiology.

[309]  K. von Figura,et al.  Cloning and sequence analysis of human guanidinoacetate N-methyltransferase cDNA. , 1995, Biochimica et biophysica acta.

[310]  T. Yokozawa,et al.  Confirmation that magnesium lithospermate B has a hydroxyl radical-scavenging action. , 1995, Experimental and toxicologic pathology : official journal of the Gesellschaft fur Toxikologische Pathologie.

[311]  A. Eisen,et al.  Experimental ischemic myopathy. , 1974, Journal of the neurological sciences.

[312]  K. Takahashi,et al.  Identification and property of the mutagenic principle formed from a food-component, methylguanidine, after nitrosation in simulated gastric juice. , 1973, Biochemical and biophysical research communications.

[313]  J. Liska,et al.  Release patterns of CK-MB and mitochondrial CK following myocardial ischaemia. , 1985, Clinica chimica acta; international journal of clinical chemistry.

[314]  P. Mateo,et al.  Creatine kinase is the main target of reactive oxygen species in cardiac myofibrils. , 1996, Circulation research.

[315]  Qing-Rong Liu,et al.  Molecular Characterization of Four Pharmacologically Distinct a-Aminobutyric Acid Transporters in Mouse Brain * , 2001 .

[316]  P. D. De Deyn,et al.  Guanidino compounds in serum and cerebrospinal fluid of non-dialyzed patients with renal insufficiency. , 1987, Clinica chimica acta; international journal of clinical chemistry.

[317]  L. Vander Elst,et al.  31P NMR kinetics study of cardiac metabolism under mild hypoxia. , 1995, Journal of magnetic resonance. Series B.

[318]  W. Weiner,et al.  Early combination therapy (bromocriptine and levodopa) does not prevent motor fluctuations in Parkinson's disease , 1993, Neurology.

[319]  M. Tarnopolsky,et al.  Oral Creatine Supplementation and Athletic Performance: A Critical Review , 1998, Clinical journal of sport medicine : official journal of the Canadian Academy of Sport Medicine.

[320]  M. Matsuoka,et al.  Effects of neurotoxins on brain creatine kinase activity. , 1993, Environmental research.

[321]  R. Pennington Clinical biochemistry of muscular dystrophy. , 1980, British medical bulletin.

[322]  M. Wyss,et al.  Mitochondrial creatine kinase: a key enzyme of aerobic energy metabolism. , 1992, Biochimica et biophysica acta.

[323]  D. Pette,et al.  Increased mitochondrial creatine kinase in chronically stimulated fast‐twitch rabbit muscle , 1985, FEBS letters.

[324]  O. Levillain,et al.  Guanidino compound metabolism in rats subjected to 20% to 90% nephrectomy. , 1995, Kidney international.

[325]  T. Yokozawa,et al.  Major role of hydroxyl radical in the conversion of creatinine to creatol. , 1994, Nephron.

[326]  A. M. Lefer,et al.  Pharmacology of the endothelium in ischemia-reperfusion and circulatory shock. , 1993, Annual review of pharmacology and toxicology.

[327]  A. Koretsky,et al.  Absence of myofibrillar creatine kinase and diaphragm isometric function during repetitive activation. , 1998, Journal of applied physiology.

[328]  M. Toyota,et al.  Genetic changes induced by heterocyclic amines. , 1997, Mutation research.

[329]  L. Prencipe,et al.  A step forward in enzymatic measurement of creatinine. , 1994, Clinical chemistry.

[330]  H. Sweeney,et al.  Creatine depletion elicits structural, biochemical, and physiological adaptations in rat costal diaphragm. , 1996, The American journal of physiology.

[331]  What is Controlling Life? 50 Years After Erwin Schrödinger's What is Life? , 1994 .

[332]  J. Silverlight,et al.  An analogue of creatine increases TRH-stimulated prolactin secretion and phosphoinositide hydrolysis in rat pituitary tumour cells , 1988, Molecular and Cellular Endocrinology.

[333]  H. Luhmann,et al.  Hypoxia-induced functional alterations in adult rat neocortex. , 1992, Journal of neurophysiology.

[334]  T. Yoshimoto,et al.  Creatinine Decomposing Enzymes in Pseudomonas putida , 1976 .

[335]  F. Hanefeld,et al.  Guanidinoacetate methyltransferase deficiency: the first inborn error of creatine metabolism in man. , 1996, American journal of human genetics.

[336]  P. Buckel,et al.  Enzymes in diagnostics: achievements and possibilities of recombinant DNA technology. , 1994, Clinical chemistry.

[337]  P. Urdal,et al.  Cytoplasmic creatine kinase isoenzymes quantitated in tissue specimens obtained at surgery. , 1983, Clinical chemistry.

[338]  C. Bachmann,et al.  Hyperornithinemia-Hyperammonemia- Homocitrullinuria Syndrome: Low Creatine Excretion and Effect of Citrulline, Arginine, or Ornithine Supplement , 1987, Pediatric Research.

[339]  B. Teicher,et al.  Creatine and phosphocreatine analogs: anticancer activity and enzymatic analysis. , 1996, Oncology research.

[340]  P. D. De Deyn,et al.  Therapeutic trial of arginine restriction in creatine deficiency syndrome , 1998, European Journal of Pediatrics.

[341]  A. Heerschap,et al.  Effects of the creatine analogue beta-guanidinopropionic acid on skeletal muscles of mice deficient in muscle creatine kinase. , 1994, Biochimica et biophysica acta.

[342]  E. Schneeberger,et al.  Interstitial nephritis in a patient taking creatine. , 1999, The New England journal of medicine.

[343]  S. Natelson,et al.  Separation and estimation of certain guanidino compounds. Application to human urine , 1963 .

[344]  M. Kushmerick,et al.  Mammalian skeletal muscle fibers distinguished by contents of phosphocreatine, ATP, and Pi. , 1992, Proceedings of the National Academy of Sciences of the United States of America.

[345]  F. Savabi,et al.  Alteration of the phosphocreatine energy shuttle components in diabetic rat heart. , 1991, Journal of molecular and cellular cardiology.

[346]  J. Steghens,et al.  Identification of the creatine binding domain of creatine kinase by photoaffinity labeling. , 1998, Biochimica et biophysica acta.

[347]  H. Dustan Rational therapies for hypertension. Is step 1 of stepped care archaic? , 1987, Circulation.

[348]  A. Banerjee,et al.  Oxygen metabolite effects on creatine kinase and cardiac energetics after reperfusion. , 1991, The American journal of physiology.

[349]  I. Segal,et al.  The effect of growth hormone and thyroxine on the amount of L-arginine:glycine amidinotransferase in kidneys of hypophysectomized rats. Purification and some properties of rat kidney transamidinase. , 1980, The Journal of biological chemistry.

[350]  C. Higgins,et al.  31P magnetic resonance spectroscopy of pressure overload hypertrophy in rats: effect of reduced perfusion pressure. , 1990, Cardiovascular research.

[351]  H. Lee,et al.  Accumulation of phosphocreatine and creatine in the cells and fluid of mouse seminal vesicles is regulated by testosterone. , 1991, Biology of reproduction.

[352]  R. Kreider,et al.  Effects of creatine supplementation on repetitive sprint performance and body composition in competitive swimmers. , 1997, International journal of sport nutrition.

[353]  I. Mujika,et al.  Creatine supplementation does not improve sprint performance in competitive swimmers. , 1996, Medicine & Science in Sports & Exercise.

[354]  Shi-Jiang Li,et al.  Differentiation of metabolic concentrations between gray matter and white matter of human brain by in vivo 1H magnetic resonance spectroscopy , 1998, Magnetic resonance in medicine.

[355]  P. Mathes,et al.  Functional compartmentation of ATP and creatine phosphate in heart muscle. , 1970, Journal of molecular and cellular cardiology.

[356]  W. Parmley,et al.  Improvement in myocardial performance without a decrease in high-energy phosphate metabolites after isoproterenol in Syrian cardiomyopathic hamsters. , 1988, Circulation.

[357]  S. M. Humphrey,et al.  Subcellular distribution of energy metabolites in the pre-ischaemic and post-ischaemic perfused working rat heart. , 1990, European journal of biochemistry.

[358]  K. Martin,et al.  Cell cycle studies of cyclocreatine, a new anticancer agent. , 1994, Cancer research.

[359]  J. Timbrell,et al.  Creatine metabolism in the seminiferous epithelium of rats. I. Creatine synthesis by isolated and cultured cells. , 1998, Journal of reproduction and fertility.

[360]  I. Macdonald,et al.  Stimulatory effect of insulin on creatine accumulation in human skeletal muscle. , 1998, American journal of physiology. Endocrinology and metabolism.

[361]  M. C. Crim,et al.  Creatine Metabolism in Men: Creatine Pool Size and Turnover in Relation to Creatine Intake , 1976 .

[362]  E. Shoubridge,et al.  A 31P-nuclear magnetic resonance study of skeletal muscle metabolism in rats depleted of creatine with the analogue beta-guanidinopropionic acid. , 1984, Biochimica et biophysica acta.

[363]  Y. Suzuki,et al.  Inactivation of rabbit muscle creatine kinase by hydrogen peroxide. , 1992, Free radical research communications.

[364]  H. Nagasawa,et al.  Inhibition by guanidino compounds of the growth of spontaneous mammary tumours in SHN mice. , 1997, Anticancer research.

[365]  J. A. Thomas,et al.  S-thiolation of cytoplasmic cardiac creatine kinase in heart cells treated with diamide. , 1987, Biochimica et biophysica acta.

[366]  C. Davis,et al.  Metabolic activation of heterocyclic amine food mutagens in the mammary gland of lactating Fischer 344 rats. , 1994, Cancer letters.

[367]  H. Yamada,et al.  Microbial enzymes for creatinine assay: a review. , 1989, Clinica chimica acta; international journal of clinical chemistry.

[368]  K. Kobashi,et al.  L-gulono-gamma-lactone oxidase is the enzyme responsible for the production of methylguanidine in the rat liver. , 1993, Nephron.

[369]  W. Engel,et al.  Transfer of beta-amyloid precursor protein gene using adenovirus vector causes mitochondrial abnormalities in cultured normal human muscle. , 1996, Proceedings of the National Academy of Sciences of the United States of America.

[370]  T. Godfraind,et al.  Action of creatinol-O-phosphate on the contractility changes evoked by hypoxia and ischemia in rat isolated heart. , 1984, Arzneimittel-Forschung.

[371]  R. Terjung,et al.  Molecular and kinetic alterations of muscle AMP deaminase during chronic creatine depletion. , 1998, American journal of physiology. Cell physiology.

[372]  B. Maziére,et al.  Water, electrolytes and protein content of muscle obtained by needle biopsy in uremic children. , 1974, Biomedicine / [publiee pour l'A.A.I.C.I.G.].

[373]  A. Koretsky,et al.  Insights into cellular energy metabolism from transgenic mice. , 1995, Physiological reviews.

[374]  S. Manabe,et al.  Detection of the carcinogen 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) in beer and wine. , 1993, Carcinogenesis.

[375]  J. Stekol,et al.  The synthesis of choline and creatine in rats under various dietary conditions. , 1953, The Journal of biological chemistry.

[376]  J. Ingwall,et al.  31P Nuclear Magnetic Resonance Spectroscopic Imaging of Regions of Remodeled Myocardium in the Infarcted Rat Heart , 1995 .

[377]  T. Date,et al.  Rat liver guanidinoacetate methyltransferase. Proximity of cysteine residues at positions 15, 90 and 219 as revealed by site-directed mutagenesis and chemical modification. , 1991, The Biochemical journal.

[378]  B. Haley,et al.  Abnormal properties of creatine kinase in Alzheimer's disease brain: correlation of reduced enzyme activity and active site photolabeling with aberrant cytosol-membrane partitioning. , 1998, Brain research. Molecular brain research.

[379]  S. Neubauer,et al.  Long-term beta-blocker treatment prevents chronic creatine kinase and lactate dehydrogenase system changes in rat hearts after myocardial infarction. , 1996, Journal of the American College of Cardiology.

[380]  R. Jennings,et al.  Nucleotide metabolism and cellular damage in myocardial ischemia. , 1985, Annual review of physiology.

[381]  M. Wolin,et al.  Role of nitric oxide and its interaction with superoxide in the suppression of cardiac muscle mitochondrial respiration. Involvement in response to hypoxia/reoxygenation. , 1996, Circulation.

[382]  P. Jenner,et al.  Understanding cell death in parkinson's disease , 1998, Annals of neurology.

[383]  J. Loike,et al.  Creatine kinase expression and creatine phosphate accumulation are developmentally regulated during differentiation of mouse and human monocytes , 1984, The Journal of experimental medicine.

[384]  M. Jägerstad,et al.  Formation of new heterocyclic amine mutagens by heating creatinine, alanine, threonine and glucose. , 1992, Mutation research.

[385]  G. Cameron,et al.  Measurement of phosphocreatine in cutaneous tissue by high pressure liquid chromatography. , 1993, The American journal of the medical sciences.

[386]  M. Jägerstad,et al.  Occurrence of mutagenic/carcinogenic heterocyclic amines in meat and fish products, including pan residues, prepared under domestic conditions. , 1994, Carcinogenesis.

[387]  D. Brdiczka,et al.  Complexes between porin, hexokinase, mitochondrial creatine kinase and adenylate translocator display properties of the permeability transition pore. Implication for regulation of permeability transition by the kinases. , 1998, Biochimica et biophysica acta.

[388]  J. Walker,et al.  Utilization of Cyclocreatine Phosphate, an Analogue of Creatine Phosphate, by Mouse Brain During Ischemia and Its Sparing Action on Brain Energy Reserves , 1980, Journal of neurochemistry.

[389]  D. Stetten,et al.  The origin of urinary creatine in progressive muscular dystrophy. , 1955, The Journal of clinical investigation.

[390]  R. Kieval,et al.  The relationship between global myocardial ischemia, left ventricular function, myocardial redox state, and high energy phosphate profile. A phosphorous-31 nuclear magnetic resonance study. , 1983, The Journal of surgical research.

[391]  M. Field Creatine supplementation in congestive heart failure. , 1996, Cardiovascular research.

[392]  N. Bourdakos,et al.  Creatine and muscular dystrophy. Relationship of creatine-creatinine metabolism to diet and drugs. , 1962, Archives of neurology.

[393]  J. Ingwall,et al.  Intracellular high-energy phosphate transfer in normal and hypertrophied myocardium. , 1987, Circulation.

[394]  T. Sugimura,et al.  Presence of carcinogenic heterocyclic amines in urine of healthy volunteers eating normal diet, but not of inpatients receiving parenteral alimentation. , 1991, Carcinogenesis.

[395]  H. Towle,et al.  Repression of rat kidney L-arginine:glycine amidinotransferase synthesis by creatine at a pretranslational level. , 1984, The Journal of biological chemistry.

[396]  M. Jägerstad,et al.  Mutagenicity of pan-fried bovine tissues in relation to their content of creatine, creatinine, monosaccharides and free amino acids. , 1987, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[397]  M. Hirose,et al.  Prevention by synthetic phenolic antioxidants of 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline (MeIQx)- or activated MelQx-induced mutagenesis and MelQx-induced rat hepatocarcinogenesis, and role of antioxidant activity in the prevention of carcinogenesis , 1998, European journal of cancer prevention : the official journal of the European Cancer Prevention Organisation.

[398]  A. Carr,et al.  Free radical inactivation of rabbit muscle creatinine kinase: catalysis by physiological and hydrolyzed ICRF-187 (ICRF-198) iron chelates. , 1994, Free radical research.

[399]  A. Wlodawer,et al.  Crystal structure of rabbit muscle creatine kinase 1 , 1998, FEBS letters.

[400]  M. Tarnopolsky,et al.  A randomized, controlled trial of creatine monohydrate in patients with mitochondrial cytopathies , 1997, Muscle & nerve.

[401]  K. Sussman,et al.  Stimulation of insulin secretion by guanidinoacetic acid and other guanidine derivatives. , 1970, Endocrinology.

[402]  Y. Ohira,et al.  Changes of contractile properties of extensor digitorum longus in response to creatine-analogue administration and/or hindlimb suspension in rats. , 1995, The Japanese journal of physiology.

[403]  T. Imanaka,et al.  Enzymatic assay for chloride ion with chloride-dependent sarcosine oxidase created by site-directed mutagenesis. , 1997, Analytical biochemistry.

[404]  J. Weisburger,et al.  Formation of mutagens in cooked foods. II. Foods with high starch content. , 1980, Cancer letters.

[405]  C. Hardy,et al.  AIDS dementia complex: brain high-energy phosphate metabolite deficits. , 1990, Radiology.

[406]  G. Navon,et al.  Phosphorus-31 and proton NMR analysis of reproductive organs of male rats. , 1985, Archives of andrology.

[407]  N. Brünner,et al.  Growth inhibition in response to estrogen withdrawal and tamoxifen therapy of human breast cancer xenografts evaluated by in vivo 31P magnetic resonance spectroscopy, creatine kinase activity, and apoptotic index. , 1995, Cancer research.

[408]  G. Radda,et al.  Effect of creatine on aerobic and anaerobic metabolism in skeletal muscle in swimmers. , 1996, British journal of sports medicine.

[409]  W. Cooke,et al.  The influence of recovery duration on high-intensity exercise performance after oral creatine supplementation. , 1997, Canadian journal of applied physiology = Revue canadienne de physiologie appliquee.

[410]  K. Storey Purification and Properties of Adductor Muscle Phosphofructokinase from the Oyster, Crassostrea virginica , 1976 .

[411]  H. Eder,et al.  Studies on chronic thyrotoxic myopathy. , 1946, The American journal of medicine.

[412]  A. Koretsky,et al.  Expression of functional mitochondrial creatine kinase in liver of transgenic mice. , 1997, The American journal of physiology.

[413]  M. Tatematsu,et al.  Induction of Adenocarcinomas in the Glandular Stomach of BALB/c Mice Treated with N‐Methyl‐N‐nitrosourea , 1992, Japanese journal of cancer research : Gann.

[414]  T. Saibara,et al.  An enzymatic assay for erythrocyte creatine as an index of the erythrocyte life time. , 1998, Clinical biochemistry.

[415]  Y. Nakamura,et al.  Diabetic renal failure and serum accumulation of the creatinine oxidative metabolites creatol and methylguanidine. , 1996, Nephron.

[416]  M. Payne,et al.  Selective reduction of creatine kinase subunit mRNAs in striated muscle of diabetic rats. , 1992, The American journal of physiology.

[417]  B. G. Blijenberg,et al.  Automated Enzymatic Methods for Creatinine Measurement with Special Attention to Bilirubin Interference , 1993, European journal of clinical chemistry and clinical biochemistry : journal of the Forum of European Clinical Chemistry Societies.

[418]  R. Lowy,et al.  Protein Metabolism , 1962, Springer Berlin Heidelberg.

[419]  G. Xue,et al.  Disturbance of methyl group metabolism in alloxan-diabetic sheep. , 1985, Biochemistry international.

[420]  S. Emi,et al.  Cloning of the creatinine amidohydrolase gene from Pseudomonas sp. PS-7. , 1995, Bioscience, biotechnology, and biochemistry.

[421]  S. Bessman,et al.  Postanoxic recovery of spontaneously beating isolated atria: pH related role of adenylate kinase. , 1986, Biochemical medicine and metabolic biology.

[422]  G. Böhm,et al.  Stabilization of creatinase from Pseudomonas putida by random mutagenesis , 1993, Protein science : a publication of the Protein Society.

[423]  M. Saugy,et al.  Effect of short-term creatine supplementation on renal responses in men , 1997, European Journal of Applied Physiology and Occupational Physiology.

[424]  F. Gejyo,et al.  Urinary excretion rate of guanidinoacetic acid as a new marker in hypertensive renal damage. , 1989, Nephron.

[425]  R. Kingston,et al.  Induction of a cellular enzyme for energy metabolism by transforming domains of adenovirus E1a , 1990, Molecular and cellular biology.

[426]  E. Newsholme,et al.  The contents of adenine nucleotides, phosphagens and some glycolytic intermediates in resting muscles from vertebrates and invertebrates. , 1975, The Biochemical journal.

[427]  R. Zahler,et al.  Estimation of heart mitochondrial creatine kinase flux using magnetization transfer NMR spectroscopy. , 1992, The American journal of physiology.

[428]  P. W. Hochachka,et al.  Does muscle creatine phosphokinase have access to the total pool of phosphocreatine plus creatine? , 1998, American Journal of Physiology. Regulatory Integrative and Comparative Physiology.

[429]  METABOLIC breakdown of sarcosine by a strain of pseudomonas aeruginosa. , 1950, Archives of biochemistry.

[430]  B. Teicher,et al.  Microtubule stabilization and potentiation of taxol activity by the creatine analog cyclocreatine. , 1995, Anti-cancer drugs.

[431]  M E Nevill,et al.  Contribution of phosphocreatine and aerobic metabolism to energy supply during repeated sprint exercise. , 1996, Journal of applied physiology.

[432]  U. Rüegg,et al.  Creatine supplementation improves intracellular Ca2+ handling and survival in mdx skeletal muscle cells , 1998, FEBS letters.

[433]  G. Xue,et al.  Developmental changes in the activities of enzymes related to methyl group metabolism in sheep tissues. , 1986, Comparative biochemistry and physiology. B, Comparative biochemistry.

[434]  J. Ingwall,et al.  Decreased energy reserve in an animal model of dilated cardiomyopathy. Relationship to contractile performance. , 1996, Circulation research.

[435]  N Tepley,et al.  Central neurogenic mechanisms of migraine , 1993, Neurology.

[436]  J. Beckmann,et al.  The gene for creatine kinase, mitochondrial 2 (sarcomeric; CKMT2), maps to chromosome 5q13.3. , 1993, Genomics.

[437]  M. H. Williams,et al.  Creatine supplementation and exercise performance: an update. , 1998, Journal of the American College of Nutrition.

[438]  A Horsman,et al.  Determination of proton metabolite concentrations and relaxation parameters in normal human brain and intracranial tumours , 1995, NMR in biomedicine.

[439]  B. Korecky,et al.  Hemodynamic Performance of Creatine-Depleted Rat Heart in Isolated Blood-Perfused Working Preparation , 1987 .

[440]  K. Turteltaub,et al.  Improved high-performance liquid chromatography analysis of 32P-postlabeled 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine-DNA adducts using in-line precolumn purification. , 1996, Journal of chromatography. B, Biomedical applications.

[441]  H. Yamada,et al.  Purification and characterization of an ATP-dependent amidohydrolase, N-methylhydantoin amidohydrolase, from Pseudomonas putida 77. , 1995, European journal of biochemistry.

[442]  E. Millanvoye-Van Brussel,et al.  Energy metabolism of cardiac cell cultures during oxygen deprivation: effects of creatine and arachidonic acid. , 1985, Biochemical pharmacology.

[443]  M. Lin,et al.  Characterization of the mutagen 2-amino-3-methylimidazo[4,5-f]quinoline prepared from a 2-methylpyridine/creatinine/acetylformaldehyde model system. , 1994, Mutagenesis.

[444]  M. Takeda Intranephron distribution of glycineamidinotransferase activity in rats. , 1992 .

[445]  I. Fleidervish,et al.  Some mechanisms of nonspecific antiarrhythmic action of phosphocreatine in acute myocardial ischemia. , 1988, Biochemical medicine and metabolic biology.

[446]  A. Quan,et al.  Serum creatinine is a poor marker of glomerular filtration rate in patients with spina bifida , 1997, Developmental medicine and child neurology.

[447]  A. Kobayashi,et al.  Decrease in heart mitochondrial creatine kinase activity due to oxygen free radicals. , 1992, Biochimica et biophysica acta.

[448]  S. Lawrence,et al.  Effects of oral creatine loading on single and repeated maximal short sprints. , 1995, Australian journal of science and medicine in sport.

[449]  M. Yoshida,et al.  Uncoupled cell cycle without mitosis induced by a protein kinase inhibitor, K-252a , 1991, The Journal of cell biology.

[450]  V. Veksler,et al.  Energy-linked functional alterations in experimental cardiomyopathies. , 1991, The American journal of physiology.

[451]  J. Zweier,et al.  The relationship between oxygen radical generation and impairment of myocardial energy metabolism following post-ischemic reperfusion. , 1991, Journal of molecular and cellular cardiology.

[452]  T. Sugimura,et al.  Synergistic enhancement of hepatic foci development by combined treatment of rats with 10 heterocyclic amines at low doses. , 1994, Carcinogenesis.

[453]  P. D. De Deyn,et al.  Guanidino compounds in serum, urine, liver, kidney, and brain of man and some ureotelic animals. , 1992, Metabolism: clinical and experimental.

[454]  T. Roenneberg,et al.  Light-Induced Phase Responses in Gonyaulax Are Drastically Altered by Creatine , 1994, Journal of biological rhythms.

[455]  V A Saks,et al.  Is there the creatine kinase equilibrium in working heart cells? , 1996, Biochemical and biophysical research communications.

[456]  S. Shimizu,et al.  Evidence for the presence of a cytosine deaminase that does not catalyze the deimination of creatine , 1987 .

[457]  A. From,et al.  High-energy phosphate responses to tachycardia and inotropic stimulation in left ventricular hypertrophy. , 1994, The American journal of physiology.

[458]  B. A. Schulte,et al.  Demonstration of early ischemic injury in porcine right ventricular myocardium. , 1989, The American journal of pathology.

[459]  N. Dhalla,et al.  Correlation between changes in the endogenous energy stores and myocardial function due to hypoxia in the isolated perfused rat heart. , 1972, Canadian journal of physiology and pharmacology.

[460]  M. H. Williams,et al.  The effect of oral creatine monohydrate supplementation on running velocity. , 1995, International journal of sport nutrition.

[461]  D. Leibfritz,et al.  Metabolism of Glycine in Primary Astroglial Cells: Synthesis of Creatine, Serine, and Glutathione , 1998, Journal of neurochemistry.

[462]  J. Jouanneau,et al.  Tumor Cell Motility and Invasion , 2002 .

[463]  H. Mikami,et al.  Liquid-chromatographic determination of guanidino compounds in plasma and erythrocyte of normal persons and uremic patients. , 1981, Clinical chemistry.

[464]  J. Ingwall,et al.  Kinetics of the creatine kinase reaction in neonatal rabbit heart: an empirical analysis of the rate equation. , 1991, Biochemistry.

[465]  T. Deguchi,et al.  Simultaneous expression of human CYP3A7 and N-acetyltransferase in Chinese hamster CHL cells results in high cytotoxicity for carcinogenic heterocyclic amines. , 1995, Archives of biochemistry and biophysics.

[466]  S. Bessman,et al.  Recovery of isolated rat atrial function related to ATP under different anoxic conditions. , 1986, Archives of biochemistry and biophysics.

[467]  M. Weiner,et al.  Postexercise phosphocreatine resynthesis is slowed in multiple sclerosis , 1994, Muscle & nerve.

[468]  A. Delgado-Escueta,et al.  Fluidity of normal and epileptogenic freeze-lesioned synaptic membranes in the cat , 1986, Brain Research.

[469]  Wei Chen,et al.  Myocardial creatine kinase kinetics in hearts with postinfarction left ventricular remodeling. , 1999, American journal of physiology. Heart and circulatory physiology.

[470]  P. O'Brien,et al.  Hydrogen peroxide supports human and rat cytochrome P450 1A2-catalyzed 2-amino-3-methylimidazo[4,5-f]quinoline bioactivation to mutagenic metabolites: significance of cytochrome P450 peroxygenase. , 1997, Chemical research in toxicology.

[471]  T. Butler,et al.  Phosphocreatinine, a high-energy phosphate in muscle, spontaneously forms phosphocreatine and creatinine under physiological conditions. , 1985, The Journal of biological chemistry.

[472]  H. Eppenberger,et al.  Localization and function of M-line-bound creatine kinase. M-band model and creatine phosphate shuttle. , 1985, Cell and muscle motility.

[473]  T. Imanaka,et al.  Active site analysis and stabilization of sarcosine oxidase by the substitution of cysteine residues , 1995, Applied and environmental microbiology.

[474]  B. Ketterer,et al.  Effects of human and rat glutathione S-transferases on the covalent DNA binding of the N-acetoxy derivatives of heterocyclic amine carcinogens in vitro: a possible mechanism of organ specificity in their carcinogenesis. , 1994, Cancer research.

[475]  T. Yokozawa,et al.  Production of methylguanidine from creatinine in normal rats and rats with renal failure. , 1990, Nephron.

[476]  K. Miyoshi,et al.  Presence of Creatinase and Sarcosine Dehydrogenase in Human Skeletal Muscle , 1980 .

[477]  L. Sautebin,et al.  Effect of methylguanidine, guanidine and structurally related compounds on constitutive and inducible nitric oxide synthase activity. , 1997, Life sciences.

[478]  S. Frostick,et al.  Energy status of cells lacking dystrophin: an in vivo/in vitro study of mdx mouse skeletal muscle. , 1991, Biochimica et biophysica acta.

[479]  M. Klein,et al.  Critical Role of Phosphagens in the Energy Cascade of Cutaneous Ischemia and Protective Action of Phosphocreatine Analogues in Skin Flap Survival , 1998, Plastic and Reconstructive Surgery.

[480]  Y. Robin Biological distribution of guanidines and phosphagens in marine annelida and related phyla from California, with a note on pluriphosphagens , 1964 .

[481]  T. Sugimura,et al.  Induction of aberrant crypt foci in C57BL/6N mice by 2-amino-9H-pyrido[2,3-b]indole (A alphaC) and 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline (MeIQx). , 1997, Cancer letters.

[482]  R. Krämer,et al.  Uptake of creatine phosphate into heart mitochondria: a leak in the creatine shuttle. , 1997, Biochimica et biophysica acta.

[483]  M. Osbakken,et al.  Creatine and cyclocreatine effects on ischemic myocardium: 31P nuclear magnetic resonance evaluation of intact heart. , 1992, Cardiology.

[484]  J. Timbrell,et al.  Creatine metabolism in the seminiferous epithelium of rats. II. Effect of modulators of cellular biochemical function on creatine secretion by cultured Sertoli cells. , 1998, Journal of reproduction and fertility.

[485]  H. Yamamura,et al.  Taurine: sodium-dependent, high-affinity transport into rat brain synaptosomes. , 1978, Molecular pharmacology.

[486]  S. Milutinović,et al.  The effect of guanidino substances from uremic plasma on insulin binding to erythrocyte receptors in uremia. , 1991, Hormone and metabolic research = Hormon- und Stoffwechselforschung = Hormones et metabolisme.

[487]  R. Edwards,et al.  Heterocyclic amines: evaluation of their role in diet associated human cancer. , 2003, British journal of clinical pharmacology.

[488]  M. Kushmerick,et al.  Creatine Kinase Equilibration Follows Solution Thermodynamics in Skeletal Muscle. , 1995, The Journal of Biological Chemistry.

[489]  J. Ingwall,et al.  Depletion of energy reserve via the creatine kinase reaction during the evolution of heart failure in cardiomyopathic hamsters. , 1996, Journal of molecular and cellular cardiology.

[490]  R. Andrews,et al.  The effect of dietary creatine supplementation on skeletal muscle metabolism in congestive heart failure. , 1998, European heart journal.

[491]  J. Saffitz,et al.  Reversible myocardial ischemic injury is not associated with increased creatine kinase activity in plasma. , 1997, Clinical chemistry.

[492]  M. Ebadi,et al.  Oxidative stress and antioxidant therapy in Parkinson's disease , 1996, Progress in Neurobiology.

[493]  T. Yoshimoto,et al.  Sarcosine Dehydrogenase from Pseudomonas putida: Purification and Some Properties , 1979 .

[494]  D. P. Jones,et al.  Abnormal metabolism of S-adenosyl-L-methionine in hypoxic rat liver. Similarities to its abnormal metabolism in alcoholic cirrhosis. , 1994, Biochimica et biophysica acta.

[495]  D. Holtzman,et al.  Creatine Increases Survival and Suppresses Seizures in the Hypoxic Immature Rat , 1998, Pediatric Research.

[496]  T. Date,et al.  Molecular cloning, sequence analysis, and expression in Escherichia coli of the cDNA for guanidinoacetate methyltransferase from rat liver. , 1988, Proceedings of the National Academy of Sciences of the United States of America.

[497]  R. Shulman,et al.  In vivo 31P‐NMR studies of myocardial high energy phosphate metabolism during anoxia and recovery , 1983, FEBS letters.

[498]  S. Natelson Metabolic relationship between urea and guanidino compounds as studied by automated fluorimetry of guanidino compounds in urine. , 1984, Clinical chemistry.

[499]  J. A. Thomas,et al.  S-thiolation of creatine kinase and glycogen phosphorylase b initiated by partially reduced oxygen species. , 1988, Biochimica et biophysica acta.

[500]  H. Koide,et al.  Intranephron distribution of creatine content in rats. , 1994, Biochemistry and molecular biology international.

[501]  D. J. Porter,et al.  Cytosine deaminase. The roles of divalent metal ions in catalysis. , 1993, The Journal of biological chemistry.

[502]  E. Achten,et al.  Value of single-voxel proton MR spectroscopy in temporal lobe epilepsy. , 1997, AJNR. American journal of neuroradiology.

[503]  J. Loike,et al.  Creatine uptake, metabolism, and efflux in human monocytes and macrophages. , 1986, The American journal of physiology.

[504]  A. Pearlman,et al.  Regional myocardial energetics during brief periods of coronary occlusion and reperfusion: Comparison with S-T segment changes. , 1978, Cardiovascular research.

[505]  W. Ellington Phosphocreatine represents a thermodynamic and functional improvement over other muscle phosphagens. , 1989, The Journal of experimental biology.

[506]  P. Kamoun,et al.  Ascorbate-cyanide test on red blood cells in uremia: effect of guanidinopropionic acid. , 1981, Nephron.

[507]  B. Sjödin,et al.  Skeletal muscle metabolism during short duration high-intensity exercise: influence of creatine supplementation. , 1995, Acta physiologica Scandinavica.

[508]  M. Gurney,et al.  Oxidative stress, mutant SOD1, and neurofilament pathology in transgenic mouse models of human motor neuron disease. , 1997, Laboratory investigation; a journal of technical methods and pathology.

[509]  A. Artru,et al.  Cyclocreatine Phosphate, an Analogue of Creatine Phosphate, Does not Improve Hypoxic Tolerance in Mice , 1982, Journal of neurochemistry.

[510]  J. Dinning,et al.  Creatinuria during recovery from aminopterin-induced folic acid deficiency in the monkey. , 1949, The Journal of biological chemistry.

[511]  H. Eppenberger,et al.  Adult rat cardiomyocytes cultured in creatine-deficient medium display large mitochondria with paracrystalline inclusions, enriched for creatine kinase , 1991, The Journal of cell biology.

[512]  W. Nayler,et al.  Protective effect of pretreatment with verapamil, nifedipine and propranolol on mitochondrial function in the ischemic and reperfused myocardium. , 1980, The American journal of cardiology.

[513]  G. Steineck,et al.  Polar and non-polar heterocyclic amines in cooked fish and meat products and their corresponding pan residues. , 1997, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[514]  O. Petroff,et al.  Symbiosis between in vivo and in vitro NMR spectroscopy: the creatine, N-acetylaspartate, glutamate, and GABA content of the epileptic human brain. , 1995, Magnetic resonance imaging.

[515]  J. Kinney,et al.  Energy Metabolism: Tissue Determinants and Cellular Corollaries , 1992 .

[516]  S. Serrano,et al.  Hyperthyroid myopathy with mitochondrial paracrystalline rectangular inclusions. , 1996, Ultrastructural pathology.

[517]  B. Chance,et al.  Induction of endotoxin tolerance in transgenic mouse liver expressing creatine kinase , 1996, Hepatology.

[518]  J. Ingwall,et al.  Inhibition of the creatine kinase reaction decreases the contractile reserve of isolated rat hearts. , 1995, The American journal of physiology.

[519]  E. A. Sims,et al.  Creatine and creatinine metabolism in the normal male adult studied with the aid of isotopic nitrogen. , 1948, The Journal of biological chemistry.

[520]  EDWIN C. Webb The Enzymes , 1961, Nature.

[521]  K. Imaida,et al.  Carcinogenicity of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) in the rat. , 1997, Mutation research.

[522]  R. Kingston,et al.  Isolation of a functional human gene for brain creatine kinase. , 1988, The Journal of biological chemistry.

[523]  T. Ruigrok,et al.  Effects of the anti-cancer drug adriamycin on the energy metabolism of rat heart as measured by in vivo 31P-NMR and implications for adriamycin-induced cardiotoxicity. , 1987, Biochimica et biophysica acta.

[524]  K. Latva-Kala,et al.  Effect of commercial marinades on the mutagenic activity, sensory quality and amount of heterocyclic amines in chicken grilled under different conditions. , 1996, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[525]  M. Kushmerick,et al.  Contractile economy and aerobic recovery metabolism in skeletal muscle adapted to creatine depletion. , 1994, The American journal of physiology.

[526]  D. Gadian,et al.  Proton magnetic resonance spectroscopy in MRI-negative temporal lobe epilepsy , 1998, Neurology.

[527]  P. Sótonyi,et al.  Ventricular adenine nucleotide translocator mRNA is upregulated in dilated cardiomyopathy. , 1993, Cardiovascular research.

[528]  P. Balsom,et al.  Creatine Supplementation and Electrically Evoked Human Muscle Fatigue , 1994 .

[529]  R. Kauppinen,et al.  Reduced N-acetylaspartate concentration in temporal lobe epilepsy by quantitative 1H MRS in vivo. , 1994, Neuroreport.

[530]  J. W. Hastings,et al.  Creatine accelerates the circadian clock in a unicellular alga , 1988, Nature.

[531]  H. Hoeger,et al.  Creatine reduces collagen accumulation in the kidneys of diabetic db/db mice. , 1994, Nephron.

[532]  F. Forouhar,et al.  Cyclocreatine inhibits neutrophil accumulation in the myocardium of a canine model of coronary artery occlusion and reperfusion. , 1993, The Journal of pharmacology and experimental therapeutics.

[533]  W. Cooke,et al.  Effect of oral creatine supplementation on power output and fatigue during bicycle ergometry. , 1995, Journal of applied physiology.

[534]  J. Jones,et al.  Implication of creatinine and gut flora in the uremic syndrome: induction of "creatininase" in colon contents of the rat by dietary creatinine. , 1972, Clinical chemistry.

[535]  V. Saks,et al.  Contractile properties and creatine kinase activity of myofilaments following ischemia and reperfusion of the rat heart. , 1987, Biochemical medicine and metabolic biology.

[536]  Lauren S. Jackson,et al.  Effects of Time and Temperature on the Formation of MeIQx and DiMeIQx in a Model System Containing Threonine, Glucose, and Creatine , 1995 .

[537]  P. Masson,et al.  Evaluation of several creatinine methods in search of a suitable secondary reference method: report from the subcommittee on reference method for creatinine, Nordic Society for Clinical Chemistry. , 1988, Scandinavian journal of clinical and laboratory investigation.

[538]  J. Manley,et al.  Creatine Phosphate, Not ATP, Is Required for 3′ End Cleavage of Mammalian Pre-mRNA in Vitro * , 1997, The Journal of Biological Chemistry.

[539]  M. Jägerstad,et al.  Influence of amino acids on the formation of mutagenic/carcinogenic heterocyclic amines in a model system. , 1995, Carcinogenesis.

[540]  J. Vanakoski,et al.  Creatine and caffeine in anaerobic and aerobic exercise: effects on physical performance and pharmacokinetic considerations. , 1998, International journal of clinical pharmacology and therapeutics.

[541]  G. Mor,et al.  Estrogen stimulation of creatine kinase B specific activity in 3T3L1 adipocytes after their differentiation in culture: Dependence on estrogen receptor , 1997, The Journal of Steroid Biochemistry and Molecular Biology.

[542]  K. Wildenthal,et al.  Roles of creatine in the regulation of cardiac protein synthesis , 1976, The Journal of cell biology.

[543]  G. Kost,et al.  A strategy for the use of cardiac injury markers (troponin I and T, creatine kinase-MB mass and isoforms, and myoglobin) in the diagnosis of acute myocardial infarction. , 1998, Archives of pathology & laboratory medicine.

[544]  H. Hashimoto,et al.  Isoform‐Specific Up‐Regulation by Ouabain of Na+,K+‐ATPase in Cultured Rat Astrocytes , 1997, Journal of neurochemistry.

[545]  M. Rigoulet,et al.  Bioenergetics of the Cell: Quantitative Aspects , 1998, Developments in Molecular and Cellular Biochemistry.

[546]  M. Fishbein,et al.  Identification and localization of creatine kinase B and M in normal, ischemic and necrotic myocardium. An immunohistochemical study. , 1984, Journal of molecular and cellular cardiology.

[547]  H. Bruhn,et al.  Multiple sclerosis in children: Cerebral metabolic alterations monitored by localized proton magnetic resonance spectroscopy in vivo , 1992, Annals of neurology.

[548]  M. C. Crim,et al.  Creatine metabolism in men: urinary creatine and creatinine excretions with creatine feeding. , 1975, The Journal of nutrition.

[549]  B. Hyman,et al.  MPP+Produces Progressive Neuronal Degeneration Which Is Mediated by Oxidative Stress , 1997, Experimental Neurology.

[550]  A. Ueda,et al.  Biosynthesis of Methylguanidine in the Hepatic Peroxisomes and the Effect of the Induction of Peroxisomal Enzymes by Clofibrate , 1997, Nephron.

[551]  S. Otsuki,et al.  Increase of Methylguanidine and Guanidinoacetic Acid in the Brain of Amygdala‐Kindled Rats , 1991, Epilepsia.

[552]  S. Mihalik,et al.  Cloning and Functional Expression of a Mammalian Gene for a Peroxisomal Sarcosine Oxidase* , 1997, The Journal of Biological Chemistry.

[553]  T. Gomi,et al.  Probing the S-adenosylmethionine-binding site of rat guanidinoacetate methyltransferase. Effect of site-directed mutagenesis of residues that are conserved across mammalian non-nucleic acid methyltransferases. , 1996, The Biochemical journal.

[554]  K. Martin,et al.  The synthetic phosphagen cyclocreatine phosphate inhibits the growth of a broad spectrum of solid tumors. , 1996, Anticancer research.

[555]  P. Angeli,et al.  Limitations of serum creatinine level and creatinine clearance as filtration markers in cirrhosis. , 1994, Archives of internal medicine.

[556]  Y. Shirokane,et al.  A new amidinohydrolase, methylguanidine amidinohydrolase from Alcaligenes SP. N‐42 , 1980, FEBS letters.

[557]  A. Mori,et al.  Measurement during convulsions of guanidino compound levels in cerebrospinal fluid collected with a catheter inserted into the cisterna magna of rabbits , 1988, Brain Research.

[558]  S. Nakamura,et al.  Purification and characterization of creatine amidinohydrolase of Alcaligenes origin. , 1986, Chemical & pharmaceutical bulletin.

[559]  U. Carraro,et al.  Ventricular Myosin and Creatine‐Kinase Isoenzymes in Hypertensive Rats Treated With Captopril , 1989, Hypertension.

[560]  A. de Haan,et al.  Myosin heavy chain isoform expression and high energy phosphate content in human muscle fibres at rest and post‐exercise. , 1996, The Journal of physiology.

[561]  D. Sömjen,et al.  Stimulation by insulin-like growth factor-I of creatine kinase activity in skeletal-derived cells and tissues of male and female rats. , 1994, The Journal of endocrinology.

[562]  P. Hartman Review: putative mutagens and carcinogens in foods. I. Nitrate/nitrite ingestion and gastric cancer mortality. , 1983, Environmental mutagenesis.

[563]  F. Booth,et al.  Cytochrome c mRNA and alpha-actin mRNA in muscles of rats fed beta-GPA. , 1990, Journal of applied physiology.

[564]  T. Date,et al.  Rat guanidinoacetate methyltransferase: mutation of amino acids within a common sequence motif of mammalian methyltransferase does not affect catalytic activity but alters proteolytic susceptibility. , 1992, The International journal of biochemistry.

[565]  C J Hardy,et al.  Alzheimer dementia: quantification of energy metabolism and mobile phosphoesters with P-31 NMR spectroscopy. , 1992, Radiology.

[566]  I. Murat,et al.  Creatine kinase and mechanical and mitochondrial functions in hereditary and diabetic cardiomyopathies. , 1991, Canadian journal of physiology and pharmacology.

[567]  E. Bengal,et al.  p53 protein is activated during muscle differentiation and participates with MyoD in the transcription of muscle creatine kinase gene , 1998, Oncogene.

[568]  S. Frostick,et al.  Cellular energetics of dystrophic muscle , 1993, Journal of the Neurological Sciences.

[569]  S. Massry,et al.  Impaired energy metabolism in skeletal muscle during phosphate depletion. , 1983, Kidney international.

[570]  M. Jägerstad,et al.  Formation of heterocyclic amines using model systems. , 1991, Mutation research.

[571]  T. Wallimann,et al.  Differential effects of creatine depletion on the regulation of enzyme activities and on creatine-stimulated mitochondrial respiration in skeletal muscle, heart, and brain. , 1996, Biochimica et biophysica acta.

[572]  M. Jackson,et al.  Age‐related changes in muscle calcium content in dystrophin‐deficient mdx mice , 1997, Muscle & nerve.

[573]  H. Yamada,et al.  Purification and characterization of a novel enzyme, N-carbamoylsarcosine amidohydrolase, from Pseudomonas putida 77. , 1986, The Journal of biological chemistry.

[574]  J. Walker,et al.  Creatine biosynthesis during embryonic development. False feedback suppression of liver amidinotransferase by N-acetimidoylsarcosine and 1-carboxymethyl-2-iminoimidazolidine (cyclocreatine). , 1976, Biochemistry.

[575]  R. Minchin,et al.  Metabolic activation pathway for the formation of DNA adducts of the carcinogen 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) in rat extrahepatic tissues. , 1994, Carcinogenesis.

[576]  P. Zaniol,et al.  Defective Brain Energy Metabolism Shown by in vivo 31P MR Spectroscopy in 28 Patients with Mitochondrial Cytopathies , 1993, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[577]  M. Tsuji,et al.  Functional maturation of creatine kinase in rat brain. , 1993, Developmental neuroscience.

[578]  M. Deluca,et al.  The effect of inorganic phosphate on creatine kinase in respiring rat heart mitochondria. , 1984, Archives of biochemistry and biophysics.

[579]  M. D. de Groot,et al.  Degradation of adenine nucleotides in ischemic and reperfused rat heart. , 1989, The American journal of physiology.

[580]  M. Pettersson,et al.  Recombinant interferon‐ γ inhibits the growth of IL‐6‐dependent human multiple myeloma cell lines in vitro , 1991 .

[581]  S. Dreskin,et al.  Phosphoenolpyruvate and creatine phosphate augment ATP and magnesium-dependent, Fc epsilon RI-mediated activation of phospholipase C in RBL cell ghosts. , 1993, Journal of immunology.

[582]  R. Ventura-clapier,et al.  Biochemical, mechanical and energetic characterization of right ventricular hypertrophy in the ferret heart. , 1994, Journal of molecular and cellular cardiology.

[583]  J. Frahm,et al.  Regional metabolite concentrations in human brain as determined by quantitative localized proton MRS , 1998, Magnetic resonance in medicine.

[584]  E. Shoubridge,et al.  Creatine kinase kinetics, ATP turnover, and cardiac performance in hearts depleted of creatine with the substrate analogue beta-guanidinopropionic acid. , 1985, Biochimica et Biophysica Acta.

[585]  A. Olsen,et al.  The human guanidinoacetate methyltransferase (GAMT) gene maps to a syntenic region on 19p13.3, homologous to band C of mouse chromosome 10, but GAMT is not mutated in jittery mice. , 1997, Biochemical and biophysical research communications.

[586]  M A Portman,et al.  Maturational changes in respiratory control through creatine kinase in heart in vivo. , 1992, The American journal of physiology.

[587]  G. Nagels,et al.  Guanidino compounds in serum and urine of nondialyzed patients with chronic renal insufficiency. , 1997, Metabolism: clinical and experimental.

[588]  C. Davis,et al.  N-acetyltransferase expression and metabolic activation of the food-derived heterocyclic amines in the human mammary gland. , 1996, Cancer research.

[589]  P. D. Gollnick,et al.  Effect of creatine phosphate on the contractile activity in acutely failing rat heart. , 1998, Cardiologia.

[590]  T. Annesley,et al.  Cyclocreatine phosphate as a substitute for creatine phosphate in vertebrate tissues. Energistic considerations. , 1977, Biochemical and biophysical research communications.

[591]  M. Jaffé,et al.  Ueber den Niederschlag, welchen Pikrinsäure in normalem Harn erzeugt und über eine neue Reaction des Kreatinins. , 1886 .

[592]  E. McFarland,et al.  Brain creatine phosphate and creatine kinase in mice fed an analogue of creatine , 1989, Brain Research.

[593]  K. Mann,et al.  The amino acid sequences of human and pig l‐arginine:glycine amidinotransferase , 1994, FEBS letters.

[594]  Hamilton Sm,et al.  Effects of isothiocyanates on cytochrome P-450 1A1 and 1A2 activity and on the mutagenicity of heterocyclic amines. , 1996 .

[595]  A. Timoshin,et al.  Human Recombinant Extracellular‐Superoxide Dismutase Type C Improves Cardioplegic Protection Against Ischemia/Reperfusion Injury in Isolated Rat Heart , 1994, Journal of cardiovascular pharmacology.

[596]  V. Oöpik,et al.  Effect of creatine administration on blood urea level and postexercise glycogen repletion in liver and skeletal muscle in rats. , 1996, Annals of nutrition & metabolism.

[597]  L. Minkoff,et al.  Inhibition of brain sodium-potassium ATPase in uremic rats. , 1972, The Journal of laboratory and clinical medicine.

[598]  B. Wieringa,et al.  Alterations in AMP deaminase activity and kinetics in skeletal muscle of creatine kinase-deficient mice. , 1998, American journal of physiology. Cell physiology.

[599]  C. Logothetis,et al.  Antiproliferative effects of cyclocreatine on human prostatic carcinoma cells. , 1995, Anticancer research.

[600]  G. Ceriotti,et al.  Kinetic Enzymatic Determination of Creatinine by a Rapid Semiautomated Procedure , 1982, Journal of clinical chemistry and clinical biochemistry. Zeitschrift fur klinische Chemie und klinische Biochemie.

[601]  A. Arieff,et al.  Nervous system complications in uremia. , 1988, Annals of internal medicine.

[602]  J. Ingwall The hypertrophied myocardium accumulates the MB-creatine kinase isozyme. , 1984, European heart journal.

[603]  S. Thorgeirsson,et al.  Metabolic activation and genotoxicity of heterocyclic arylamines. , 1992, Cancer research.

[604]  S. Krause Effect of global myocardial stunning on Ca2(+)-sensitive myofibrillar ATPase activity and creatine kinase kinetics. , 1990, The American journal of physiology.

[605]  N. Hollenberg,et al.  Specificity of the volume-sensitive sodium pump inhibitor isolated from human peritoneal dialysate in chronic renal failure. , 1996, Kidney international.

[606]  M. Tarnopolsky,et al.  Potential Side Effects of Oral Creatine Supplementation: A Critical Review , 1998, Clinical journal of sport medicine : official journal of the Canadian Academy of Sport Medicine.

[607]  C. Earnest,et al.  High-performance capillary electrophoresis-pure creatine monohydrate reduces blood lipids in men and women. , 1996, Clinical science.

[608]  M. Tabaton,et al.  Amyloid‐β Deposition in Alzheimer Transgenic Mice Is Associated with Oxidative Stress , 1998, Journal of neurochemistry.

[609]  G. R. Griffiths,et al.  Accumulation of analgo of phosphocreatine in muscle of chicks fed 1-carboxymethyl-2-iminoimidazolidine (cyclocreatine). , 1976, The Journal of biological chemistry.

[610]  K. Martin,et al.  Evaluation of creatine analogues as a new class of anticancer agents using freshly explanted human tumor cells. , 1994, Journal of the National Cancer Institute.

[611]  S. Nagase,et al.  Biosynthesis of guanidine in isolated rat hepatocytes, perfused rat liver and intact animals. , 1994, Nephron.

[612]  C. Earnest,et al.  The effect of creatine monohydrate ingestion on anaerobic power indices, muscular strength and body composition. , 1995, Acta physiologica Scandinavica.

[613]  E. Shoubridge,et al.  Phosphocreatine-dependent protein phosphorylation in rat skeletal muscle. , 1992, The Biochemical journal.

[614]  S. Nagase,et al.  Biosynthesis of methylguanidine in isolated rat hepatocytes and in vivo. , 1985, Nephron.

[615]  J. Tucker,et al.  Differential effect of acetyltransferase expression on the genotoxicity of heterocyclic amines in CHO cells. , 1997, Mutation research.

[616]  J. D. Jones,et al.  Creatinine metabolism and toxicity. , 1975, Kidney international. Supplement.

[617]  The gene encoding guanidinoacetate methyltransferase (GAMT) maps to human chromosome 19 at band p13.3 and to mouse chromosome 10. , 1998, Genomics.

[618]  H. Mikami,et al.  Tissue and blood cell concentration of methylguanidine in rats and patients with chronic renal failure. , 1981, Nephron.

[619]  A. Wechsler,et al.  Characteristics of chronic left ventricular hypertrophy induced by subcoronary valvular aortic stenosis. II. Response to ischemia. , 1981, The Journal of thoracic and cardiovascular surgery.

[620]  B. G. Blijenberg,et al.  Creatinine and Surveys: An Assessment , 1995, European journal of clinical chemistry and clinical biochemistry : journal of the Forum of European Clinical Chemistry Societies.

[621]  P. Williamson,et al.  Localized phosphorus 31 magnetic resonance spectroscopy in chronic schizophrenic patients and normal controls. , 1991, Archives of general psychiatry.

[622]  W. F. Payne,et al.  Creatine metabolism in skeletal muscle. 3. Specificity of the creatine entry process. , 1968, The Journal of biological chemistry.

[623]  K. Tada,et al.  Hyperornithinemia, gyrate atrophy, and ornithine ketoacid transaminase. , 1982, Advances in experimental medicine and biology.

[624]  R. Dashwood,et al.  Study of the forces stabilizing complexes between chlorophylls and heterocyclic amine mutagens , 1996, Environmental and molecular mutagenesis.

[625]  S. Neubauer,et al.  Regional biochemical remodeling in non-infarcted tissue of rat heart post-myocardial infarction. , 1996, Journal of molecular and cellular cardiology.

[626]  E. Snyderwine,et al.  DNA adducts of heterocyclic amine food mutagens: implications for mutagenesis and carcinogenesis. , 1999, Carcinogenesis.

[627]  D. Allen,et al.  A nuclear magnetic resonance study of metabolism in the ferret heart during hypoxia and inhibition of glycolysis. , 1985, The Journal of physiology.

[628]  B. Teicher,et al.  Antitumor activity of creatine analogs produced by alterations in pancreatic hormones and glucose metabolism. , 1998, In vivo.

[629]  R. Kreider,et al.  Effects of creatine supplementation on body composition, strength, and sprint performance. , 1998, Medicine and science in sports and exercise.

[630]  Jones Jd,et al.  Creatinine metabolism and toxicity. , 1975 .

[631]  J. Chang,et al.  Cloning of a creatinase gene from Pseudomonas putida in Escherichia coli by using an indicator plate , 1992, Applied and environmental microbiology.

[632]  C. Vial,et al.  Low mitochondrial proton leak due to high membrane cholesterol content and cytosolic creatine kinase as two features of the deviant bioenergetics of Ehrlich and AS30-D tumor cells. , 1992, Cancer research.

[633]  R. Teel,et al.  Effects of isothiocyanates on cytochrome P-450 1A1 and 1A2 activity and on the mutagenicity of heterocyclic amines. , 1996, Anticancer research.

[634]  W. Flameng,et al.  Changes in creatine phosphate, inorganic phosphate, and the purine pattern in dog hearts with time of coronary artery occlusion and effect thereon of mioflazine, a nucleoside transport inhibitor. , 1986, Cardiovascular research.

[635]  J. Szulmajster Bacterial degradation of creatinine. II. Creatinine desimidase. , 1958, Biochimica et biophysica acta.

[636]  M. Keshavan,et al.  Alterations in brain high-energy phosphate and membrane phospholipid metabolism in first-episode, drug-naive schizophrenics. A pilot study of the dorsal prefrontal cortex by in vivo phosphorus 31 nuclear magnetic resonance spectroscopy. , 1991, Archives of general psychiatry.

[637]  J. Ingwall Is cardiac failure a consequence of decreased energy reserve , 1993 .

[638]  V A Saks,et al.  Regulation of energy flux through the creatine kinase reaction in vitro and in perfused rat heart. 31P-NMR studies. , 1984, Biochimica et biophysica acta.

[639]  I. Sora,et al.  The cloning and expression of a human creatine transporter. , 1994, Biochemical and biophysical research communications.

[640]  T. Olsen,et al.  Early Time Course of N‐Acetylaspartate, Creatine and Phosphocreatine, and Compounds Containing Choline in the Brain After Acute Stroke: A Proton Magnetic Resonance Spectroscopy Study , 1992, Stroke.

[641]  R. Huber,et al.  Recombinant expression and isolation of human L-arginine:glycine amidinotransferase and identification of its active-site cysteine residue. , 1997, The Biochemical journal.

[642]  C. Kolar,et al.  Mutagenicity of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) when activated by hamster pancreatic duct epithelial cells: a chemopreventive role for glutathione. , 1997, Mutation research.

[643]  P. Chiang,et al.  Guanidoacetate methyltransferase. Purification and molecular properties. , 1979, The Journal of biological chemistry.

[644]  R. B. Haugland,et al.  Insulin Effect on Creatine Transport in Skeletal Muscle 1 , 1975 .

[645]  E. Calva,et al.  Creatine regulation in the embryo and growing chick. , 1970, The Biochemical journal.

[646]  A. Kuroshima,et al.  Mechanism of triiodothyronine-induced creatinuria in the rat. , 1977, The American journal of physiology.

[647]  Y. Fujise,et al.  Creatine kinase kinetics in diabetic cardiomyopathy. , 1995, The American journal of physiology.

[648]  P. Ramwell,et al.  Identification of guanidino succinate as a putative endogenous source of the endothelium derived relaxing factor. , 1992, Biochemical and biophysical research communications.

[649]  S. Thorgeirsson,et al.  Contribution of CYP1A1 and CYP1A2 to the activation of heterocyclic amines in monkeys and human. , 1994, Carcinogenesis.

[650]  H. Tamai,et al.  Purification, Crystallization and Properties of Mn2+ Dependent Guanidinoacetate Amidinohydrolase from a Pseudomonas , 1977 .

[651]  J. Dinning,et al.  The mechanism of kidney transamidinase reduction in vitamin E-deficient rabbits. , 1961, The Journal of biological chemistry.

[652]  T. Yokozawa,et al.  Comparison of renal effects of creatinine, creatol and methylguanidine in rats with adenine-induced chronic renal failure. , 1993, Nephron.

[653]  K. Clarke,et al.  Energetic correlates of cardiac failure: changes in the creatine kinase system in the failing myocardium. , 1990, European heart journal.

[654]  N. Thoai,et al.  CHAPTER 7 – Guanidine Compounds and Phosphagens , 1969 .

[655]  K. Turteltaub,et al.  The role of sulfation and/or acetylation in the metabolism of the cooked-food mutagen 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine in Salmonella typhimurium and isolated rat hepatocytes. , 1994, Chemical research in toxicology.

[656]  C. Higgins,et al.  Evaluation of the Hereditary Syrian Hamster Cardiomyopathy by 31P Nuclear Magnetic Resonance Spectroscopy: Improvement After Acute Verapamil Therapy , 1986, Circulation research.

[657]  M. Boroujerdi,et al.  Metabolism of creatinine in vivo. , 1983, Clinical chemistry.

[658]  T. Kizaki,et al.  Increased growth of brown adipose tissue but its reduced thermogenic activity in creatine-depleted rats fed beta-guanidinopropionic acid. , 1995, Biochimica et biophysica acta.

[659]  D. Tenney,et al.  Human cytomegalovirus US3 and UL36-38 immediate-early proteins regulate gene expression , 1992, Journal of virology.

[660]  E. Rossomando,et al.  Cyclocreatine inhibits the production of neutrophil chemotactic factors from isolated hearts. , 1990, The American journal of pathology.

[661]  B. Quistorff,et al.  Kinetics of creatine uptake in the perfused mouse liver: a 31P-n.m.r. study of transgenic mice expressing creatine kinase (CKBB) in the liver. , 1994, The Biochemical journal.

[662]  I. Yokoi,et al.  Synthesis of neuroactive guanidino compounds by rat kidney L-arginine: glycine amidinotransferase. , 1994, Life sciences.

[663]  H. Kammermeier,et al.  Why do cells need phosphocreatine and a phosphocreatine shuttle. , 1987, Journal of molecular and cellular cardiology.

[664]  H. Passow,et al.  Creatine and creatinine transport in old and young human red blood cells. , 1980, Biochimica et biophysica acta.

[665]  J. Trojanowski,et al.  Increased F2‐isoprostanes in Alzheimer's disease: evidence for enhanced lipid peroxidation in vivo , 1998, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.

[666]  D. Gadian,et al.  Proton magnetic resonance spectroscopy in children with temporal lobe epilepsy , 1996, Annals of neurology.

[667]  M. Jägerstad,et al.  Influence of frying fat on the formation of heterocyclic amines in fried beefburgers and pan residues. , 1995, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[668]  J. Bennett,et al.  Mitochondrial toxins in models of neurodegenerative diseases. I: in vivo brain hydroxyl radical production during sytemic MPTP treatment or following microdialysis infusion of methylpyridinium or azide ions , 1997, Brain Research.

[669]  Anders Liljas,et al.  Crystal structure of catechol O-methyltransferase , 1994, Nature.

[670]  R. Roberts,et al.  An update on cardiac enzymes. , 1988, Cardiology clinics.

[671]  T. Rozycki,et al.  Transamidinase activities, in vitro, of tissues from various mammals and from rats fed protein-free, creatine-supplemented and normal diets. , 1963, Archives of Biochemistry and Biophysics.

[672]  K. Imaida,et al.  Analysis of Synergism in Hepatocarcinogenesis Based on Preneoplastic Foci Induction by 10 Heterocyclic Amines in the Rat , 1996, Japanese journal of cancer research : Gann.

[673]  M. Levi,et al.  Cholesterol modulates rat renal brush border membrane phosphate transport. , 1990, The Journal of clinical investigation.

[674]  M. Nicklin,et al.  A mammalian homolog of the bacterial monomeric sarcosine oxidases maps to mouse chromosome 11, close to Cryba1. , 1997, Genomics.

[675]  S. Dunn,et al.  Evidence for generation of the precarcinogen nitrosodimethylamine in the small intestine in chronic renal failure. , 1983, Kidney international. Supplement.

[676]  M. Bárány,et al.  Proton magnetic resonance spectroscopy of the brain in schizophrenic and affective patients , 1992, Schizophrenia Research.

[677]  P. D. De Deyn,et al.  Serum guanidino compound levels in uremic pediatric patients treated with hemodialysis or continuous cycle peritoneal dialysis. Correlations between nerve conduction velocities and altered guanidino compound concentrations. , 1995, Nephron.

[678]  T. Yokozawa,et al.  Production of methylguanidine from creatinine via creatol by active oxygen species: analyses of the catabolism in vitro. , 1991, Nephron.

[679]  Paul A. Kuzmicky,et al.  Mutagenicity and Chemical Analysis of Fumes from Cooking Meat , 1994 .

[680]  J A Helpern,et al.  In vivo 31P NMR profiles of Alzheimer's disease and multiple subcortical infarct dementia , 1989, Neurology.

[681]  C. Higgins,et al.  The preventive effect of verapamil on ethanol-induced cardiac depression: phosphorus-31 nuclear magnetic resonance and high-pressure liquid chromatographic studies of hamsters. , 1987, Circulation.

[682]  F. Dolbeare,et al.  Effect of cooking time and temperature on the heterocyclic amine content of fried beef patties. , 1994, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[683]  C. Kawai,et al.  Ischemic Preconditioning Preserves Creatine Phosphate and Intracellular pH , 1991, Circulation.

[684]  J. Townsel,et al.  Cloning and sequencing of a cDNA encoding a novel member of the human brain GABA/noradrenaline neurotransmitter transporter family. , 1995, Gene.

[685]  A. Defalco,et al.  THE SYNTHESIS OF CREATINE BY THE BRAIN OF THE INTACT RAT * , 1961, Journal of neurochemistry.

[686]  F. Apple,et al.  Canine myocardial creatine kinase isoenzyme response to coronary artery occlusion. , 1989, The American journal of physiology.

[687]  H. Thierens,et al.  Characteristics of creatine release during acute myocardial infarction, unstable angina, and cardiac surgery. , 1995, Clinical chemistry.

[688]  U. Pschorn,et al.  Preincubation with Creatine Enhances Levels of Creatine Phosphate and Prevents Anoxic Damage in Rat Hippocampal Slices , 1995, Journal of neurochemistry.

[689]  V. Saks,et al.  The cardiac contractile failure induced by chronic creatine and phosphocreatine deficiency. , 1988, Journal of molecular and cellular cardiology.

[690]  D. V. Slyke,et al.  QUANTITATIVE CLINICAL CHEMISTRY. INTERPRETATIONS , 1947 .

[691]  R. Huber,et al.  The ligand-induced structural changes of human L-Arginine:Glycine amidinotransferase. A mutational and crystallographic study. , 1999, The Journal of biological chemistry.

[692]  K. Kikugawa,et al.  Formation of the mutagenic/carcinogenic imidazoquinoxaline-type heterocyclic amines through the unstable free radical Maillard intermediates and its inhibition by phenolic antioxidants. , 1996, Carcinogenesis.

[693]  P. Fu,et al.  Comparative carcinogenicity of 4-aminobiphenyl and the food pyrolysates, Glu-P-1, IQ, PhIP, and MeIQx in the neonatal B6C3F1 male mouse. , 1992, Cancer letters.

[694]  G. Sampson,et al.  Ornithinemia, hyperammonemia, and homocitrullinuria. A disease associated with mental retardation and possibly caused by defective mitochondrial transport. , 1974, American journal of diseases of children.

[695]  F. Ebner,et al.  Rapid Hebbian plasticity of receptive fields of rat SI barrel cortex neurones following short-term sensory deprivation of whisker inputs in vivo , 1993 .

[696]  Xue Gp,et al.  Disturbance of methyl group metabolism in alloxan-diabetic sheep. , 1985 .

[697]  T. Sugimura,et al.  Isolation and identification of a new mutagen, 2-amino-4-hydroxy-methyl-3,8-dimethylimidazo[4,5-f]quinoxaline (4-CH2OH-8-MeIQx), from beef extract. , 1994, Carcinogenesis.

[698]  Charles Lempert The Chemistry Of The Glycocyamidines , 1959 .

[699]  R. Kloner,et al.  Superoxide Dismutase Plus Catalase Improve Contractile Function in the Canine Model of the “Stunned Myocardium” , 1986, Circulation research.

[700]  R. Kamman,et al.  In vivo phosphorus magnetic resonance spectroscopy in multiple sclerosis. , 1992, Archives of neurology.

[701]  J. Roberts,et al.  Synthesis and accumulation of an extremely stable high-energy phosphate compound by muscle, heart, and brain of animals fed the creatine analog, 1-carboxyethyl-2-iminoimidazolidine (homocyclocreatine). , 1983, Archives of biochemistry and biophysics.

[702]  A. Wittwer,et al.  Identification of the folate-binding proteins of rat liver mitochondria as dimethylglycine dehydrogenase and sarcosine dehydrogenase. Flavoprotein nature and enzymatic properties of the purified proteins. , 1981, The Journal of biological chemistry.

[703]  K. Spencer Analytical Reviews in Clinical Biochemistry: The Estimation of Creatinine , 1986, Annals of clinical biochemistry.

[704]  T. Imanaka,et al.  Gene cluster for creatinine degradation in Arthrobacter sp. TE1826 , 1998, Molecular and General Genetics MGG.

[705]  P. D. De Deyn,et al.  Guanidino compounds in guanidinoacetate methyltransferase deficiency, a new inborn error of creatine synthesis. , 1997, Metabolism: clinical and experimental.

[706]  G. Fein,et al.  Asymmetry of temporal lobe phosphorous metabolism in schizophrenia: A 31Phosphorous magnetic resonance spectroscopic imaging study , 1995, Biological Psychiatry.

[707]  J F Clark,et al.  Creatine and phosphocreatine: a review of their use in exercise and sport. , 1997, Journal of athletic training.

[708]  J. Shaddock,et al.  Effect of glutathione depletion and inhibition of glucuronidation and sulfation on 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) metabolism, PhIP-DNA adduct formation and unscheduled DNA synthesis in primary rat hepatocytes. , 1994, Carcinogenesis.

[709]  J. R. Neely,et al.  An improved method for isolation of mitochondria in high yields from normal, ischemic, and autolyzed rat hearts. , 1982, Analytical biochemistry.

[710]  B. Kalyanaraman,et al.  Rapid and irreversible inhibition of creatine kinase by peroxynitrite , 1998, FEBS letters.

[711]  H. Sweeney The importance of the creatine kinase reaction: the concept of metabolic capacitance. , 1994, Medicine and science in sports and exercise.

[712]  E. Kristiansen The role of aberrant crypt foci induced by the two heterocyclic amines 2-amino-3-methyl-imidazo[4,5-f]quinoline (IQ) and 2-amino-1-methyl-6-phenyl-imidazo[4,5-b]pyridine (PhIP) in the development of colon cancer in mice. , 1996, Cancer letters.

[713]  S. Neubauer,et al.  Effects of chronic dietary creatine feeding on cardiac energy metabolism and on creatine content in heart, skeletal muscle, brain, liver and kidney. , 1998, Journal of molecular and cellular cardiology.

[714]  T. Miura,et al.  Adriamycin-Fe(3+)-induced inactivation of rat heart mitochondrial creatine kinase: sensitivity to lipid peroxidation. , 1994, Biological & pharmaceutical bulletin.

[715]  R. Jain,et al.  Creatine and cyclocreatine treatment of human colon adenocarcinoma xenografts: 31P and 1H magnetic resonance spectroscopic studies , 1999, British Journal of Cancer.

[716]  R. Vikse,et al.  Mutagenicity, Creatine and Nutrient Contents of Pan Fried Meat from Various Animal Species , 1993, Acta Veterinaria Scandinavica.

[717]  P. D. De Deyn,et al.  Guanidino compounds in uraemic dialysed patients. , 1986, Clinica chimica acta; international journal of clinical chemistry.

[718]  B. Ekblom,et al.  Creatine in Humans with Special Reference to Creatine Supplementation , 1994, Sports medicine.

[719]  M. Sugiyama,et al.  Cloning, Sequencing, and Overexpression in Escherichia coli of a Sarcosine Oxidase-Encoding Gene Linked to the Bacillus Creatinase Gene , 1994 .

[720]  A. Kuznetsov,et al.  Phosphocreatine pathway for energy transport: ADP diffusion and cardiomyopathy. , 1991, The American journal of physiology.

[721]  E. Braunwald,et al.  Myocardial High Energy Phosphate Stores in Cardiac Hypertrophy and Heart Failure , 1967, Circulation research.

[722]  A. Mori,et al.  Effects of guanidino compounds on rabbit brain microsomal Na+‐K+ ATPase activity , 1976, Journal of neurochemistry.

[723]  C. D. Fitch,et al.  Experimental depletion of creatine and phosphocreatine from skeletal muscle. , 1974, The Journal of biological chemistry.

[724]  K O Lim,et al.  In vivo brain concentrations of N-acetyl compounds, creatine, and choline in Alzheimer disease. , 1999, Archives of general psychiatry.

[725]  J. Holloszy,et al.  Adaptation of rat skeletal muscle to creatine depletion: AMP deaminase and AMP deamination. , 1992, Journal of applied physiology.

[726]  P. Schenone,et al.  3,5-Diphenyl-1H-pyrazole derivatives. IX. 2-substituted 4-phenyl-5-(3,5-diphenyl-1H-pyrazol-1-yl) pyrimidines with platelet antiaggregating and other activities. , 1992, Farmaco.

[727]  B. Hamprecht,et al.  Creatine Transport in Cultured Cells of Rat and Mouse Brain , 1989, Journal of neurochemistry.

[728]  R S Balaban,et al.  Relation between phosphate metabolites and oxygen consumption of heart in vivo. , 1989, The American journal of physiology.

[729]  H. Yamada,et al.  A new enzymatic method for the measurement of creatinine involving a novel ATP-dependent enzyme, N-methylhydantoin amidohydrolase. , 1995, Bioscience, biotechnology, and biochemistry.

[730]  W. Markesbery,et al.  Excess brain protein oxidation and enzyme dysfunction in normal aging and in Alzheimer disease. , 1991, Proceedings of the National Academy of Sciences of the United States of America.

[731]  J. Pettegrew,et al.  Phosphocreatine-dependent Glutamate Uptake by Synaptic Vesicles , 1996, The Journal of Biological Chemistry.

[732]  T. Sugimura,et al.  Role of Fat and Calcium in Cancer Causation by Food Mutagens, Heterocyclic Amines , 1994, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.

[733]  M. McKenna,et al.  Effect of creatine supplementation on sprint exercise performance and muscle metabolism. , 1998, Journal of applied physiology.

[734]  R. Shemin,et al.  The creatine kinase system in normal and diseased human myocardium. , 1985, The New England journal of medicine.

[735]  R. Huber,et al.  The Ligand-induced Structural Changes of Humanl-Arginine:Glycine Amidinotransferase , 1999, The Journal of Biological Chemistry.

[736]  Y. Kinoshita,et al.  Absolute concentrations of metabolites in human brain tumors using in vitro proton magnetic resonance spectroscopy , 1997, NMR in biomedicine.

[737]  D. Jenkins,et al.  Effects of oral creatine supplementation on multiple sprint cycle performance. , 1996, Australian journal of science and medicine in sport.

[738]  W. Kabsch,et al.  Mitochondrial creatine kinase--a square protein. , 1997, Current opinion in structural biology.

[739]  J. Walker Creatine: biosynthesis, regulation, and function. , 2006, Advances in enzymology and related areas of molecular biology.

[740]  T. Yokozawa,et al.  Proof that green tea tannin suppresses the increase in the blood methylguanidine level associated with renal failure. , 1997, Experimental and toxicologic pathology : official journal of the Gesellschaft fur Toxikologische Pathologie.

[741]  J. McCarrey,et al.  Human testis-specific PGK gene lacks introns and possesses characteristics of a processed gene , 1987, Nature.

[742]  S. Clarke,et al.  Sequence of the D-aspartyl/L-isoaspartyl protein methyltransferase from human erythrocytes. Common sequence motifs for protein, DNA, RNA, and small molecule S-adenosylmethionine-dependent methyltransferases. , 1989, The Journal of biological chemistry.

[743]  J. Boen,et al.  Cloning and sequencing of rat kidney L-arginine:glycine amidinotransferase. Studies on the mechanism of regulation by growth hormone and creatine. , 1994, The Journal of biological chemistry.

[744]  A. Koretsky,et al.  Phosphocreatine protects transgenic mouse liver expressing creatine kinase from hypoxia and ischemia. , 1993, The American journal of physiology.

[745]  K. Storey Purification and properties of adductor muscle phosphofructokinase from the oyster, Crassostrea virginica. The aerobic/anaerobic transition: role of arginine phosphate in enzyme control. , 1976, European journal of biochemistry.

[746]  James D. Jones,et al.  Creatinine metabolism in humans with decreased renal function: creatinine deficit. , 1974, Clinical chemistry.

[747]  K. Miyazawa,et al.  Changes in creatine kinase M localization in acute ischemic myocardial cells. Immunoelectron microscopic studies. , 1993, Circulation research.

[748]  M. Tsuji,et al.  In vivo phosphocreatine and ATP in piglet cerebral gray and white matter during seizures , 1998, Brain Research.

[749]  V. Fischer,et al.  Effects of β-guanidinopropionic acid on murine skeletal muscle , 1980, Experimental Neurology.

[750]  R. Meyer Linear dependence of muscle phosphocreatine kinetics on total creatine content. , 1989, The American journal of physiology.

[751]  V. Saks,et al.  Phosphocreatine: Molecular and cellular aspects of the mechanism of cardioprotective action , 1993 .

[752]  F A Jolesz,et al.  Creatine supplementation and age influence muscle metabolism during exercise. , 1998, Journal of applied physiology.

[753]  M. Weiner,et al.  In vivo phosphorus-31 spectroscopic imaging in patients with global myocardial disease. , 1990, The American journal of cardiology.

[754]  J. Dunn,et al.  Sodium is elevated in mdx muscles: Ionic interactions in dystrophic cells , 1993, Journal of the Neurological Sciences.

[755]  G Eisenbrand,et al.  Food-borne heterocyclic amines. Chemistry, formation, occurrence and biological activities. A literature review. , 1993, Toxicology.

[756]  E. Hopmans,et al.  Health risks of heterocyclic amines. , 1997, Mutation research.

[757]  S. Steinbacher,et al.  Crystal structure and mechanism of human L‐arginine:glycine amidinotransferase: a mitochondrial enzyme involved in creatine biosynthesis , 1998, The EMBO journal.

[758]  G. Xue,et al.  Quantitative study on creatine metabolism in sheep tissues. , 1988, Biochemistry international.

[759]  M. Mattson,et al.  A model for beta-amyloid aggregation and neurotoxicity based on free radical generation by the peptide: relevance to Alzheimer disease. , 1994, Proceedings of the National Academy of Sciences of the United States of America.

[760]  E. A. Sims,et al.  The effect of methyltestosterone on the rate of synthesis of creatine. , 1948, The Journal of biological chemistry.

[761]  K. Takahashi,et al.  Screening of compounds structurally and functionally related to N-methyl-N'-nitro-N-nitrosoquanidine, a gastric carcinogen. , 1974, Gan.

[762]  S. R. Olsen,et al.  Creatine supplementation delays onset of fatigue during repeated bouts of sprint running , 1998, Scandinavian journal of medicine & science in sports.

[763]  B. Pittman,et al.  Inhibition of PhIP mutagenicity by caffeine, lycopene, daidzein, and genistein. , 1998, Mutation research.

[764]  I. Jacobs,et al.  Creatine ingestion increases anaerobic capacity and maximum accumulated oxygen deficit. , 1997, Canadian journal of applied physiology = Revue canadienne de physiologie appliquee.

[765]  M J Kushmerick,et al.  Energy balance in muscle activity: simulations of ATPase coupled to oxidative phosphorylation and to creatine kinase. , 1998, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.

[766]  T. Kawasaki,et al.  Identification of creatine as a cofactor of thiamin‐diphosphate kinase , 1986, FEBS letters.

[767]  T. Yoshimoto,et al.  Creatinine amidohydrolase (creatininase) from Pseudomonas putida. Purification and some properties. , 1979, Journal of biochemistry.

[768]  Y. Fukuhara,et al.  Effect of arginine or creatinine administration on the urinary excretion of methylguanidine. , 1978, Nephron.

[769]  T. Yoshimoto,et al.  Creatine amidinohydrolase of Pseudomonas putida: crystallization and some properties. , 1976, Archives of biochemistry and biophysics.

[770]  M. Weisfeldt,et al.  Mechanisms of Ischemic Myocardial Cell Damage Assessed by Phosphorus‐31 Nuclear Magnetic Resonance , 1982, Circulation.

[771]  E. Masood Performance-enhancers pose dilemma for rule-makers , 1996, Nature.

[772]  M. Knize,et al.  New mutagens from cooked food. , 1990, Progress in clinical and biological research.

[773]  D. Gadian,et al.  A 31P-NMR saturation transfer study of the regulation of creatine kinase in the rat heart. , 1982, Biochimica et biophysica acta.

[774]  P. Jakeman,et al.  The effect of oral creatine supplementation on the 1000-m performance of competitive rowers. , 1996, Journal of sports sciences.

[775]  Bruce R. Rosen,et al.  Neuroprotective Effects of Creatine and Cyclocreatine in Animal Models of Huntington’s Disease , 1998, The Journal of Neuroscience.

[776]  R. Scopes,et al.  Inhibition of muscle phosphorylase a by natural components of the sarcoplasm. , 1981, Archives of biochemistry and biophysics.

[777]  T. Kuroki,et al.  Regulation of creatine phosphokinase B activity by protein kinase C. , 1990, Biochemical and biophysical research communications.

[778]  H. Nakagawa,et al.  Formation of arginine and guanidinoacetic acid in the kidney in vivo. Their relations with the liver and their regulation. , 1981, Journal of biochemistry.

[779]  G. Gerstenblith,et al.  Absence of Acute Doxorubicin-Induced Dysfunction of Heart Mitochondrial Oxidative Phosphorylation and Creatine Kinase Activities , 1988, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.

[780]  S. Ishikawa,et al.  Presence of 2-amino-3,8-dimethylimidazo [4,5-f]quinoxaline (MeIQx) in dialysate from patients with uremia. , 1986, Biochemical and biophysical research communications.

[781]  M. D. De Buyzere,et al.  Can Creatine Predict Further Major Cardiovascular Events after Acute Myocardial Infarction? , 1991, Annals of clinical biochemistry.

[782]  Y. Guillou,et al.  A new phosphagen, N'-phosphorylguanidinoethylphospho-O-( -N,N-dimethyl)serine (phosphothalassemine). , 1972, Biochemistry.

[783]  R. Kelley,et al.  Degradation and resynthesis of adenine nucleotides in adult rat heart myocytes. , 1987, The Journal of biological chemistry.

[784]  E. Hollande,et al.  Creatine phosphate as energy source in the cerulein-stimulated rat pancreas study by31P nuclear magnetic resonance , 1991, International journal of pancreatology : official journal of the International Association of Pancreatology.

[785]  W. Tuganowski,et al.  Inhibitory effects of O-benzyl-phosphocreatine ethyl ester in rabbit myocardium. , 1996, Journal of molecular and cellular cardiology.

[786]  Denise,et al.  The Effect of Growth Hormone and Thyroxine on the Amount of L-Arginine:Glycine Amidinotransferase in Kidneys of Hypophysectomized Rats , 2001 .

[787]  J. Roberts,et al.  Higher homolog and N-ethyl analog of creatine as synthetic phosphagen precursors in brain, heart, and muscle, repressors of liver amidinotransferase, and substrates for creatine catabolic enzymes. , 1985, The Journal of biological chemistry.

[788]  G. Uhl,et al.  'Choline/orphan V8-2-1/creatine transporter' mRNA is expressed in nervous, renal and gastrointestinal systems. , 1994, Brain research. Molecular brain research.

[789]  M. Kilimann,et al.  A creatine transporter cDNA from Torpedo illustrates structure/function relationships in the GABA/noradrenaline transporter family. , 1994, Journal of Molecular Biology.

[790]  S. Neubauer,et al.  Preservation of left ventricular mechanical function and energy metabolism in rats after myocardial infarction by the angiotensin-converting enzyme inhibitor quinapril. , 1996, Journal of cardiovascular pharmacology.

[791]  F. Matschinsky,et al.  The role of ATP and free ADP in metabolic coupling during fuel-stimulated insulin release from islet beta-cells in the isolated perfused rat pancreas. , 1991, The Journal of biological chemistry.

[792]  R. C. Haas,et al.  Regulation of expression of M, B, and mitochondrial creatine kinase mRNAs in the left ventricle after pressure overload in rats. , 1991, Circulation research.

[793]  T. Katsuragi,et al.  Cytosine Deaminase from Escherichia coli-Production, Purification, and Some Characteristics , 1986 .

[794]  J. Trojanowski,et al.  Oxidation of Cytosolic Proteins and Expression of Creatine Kinase BB in Frontal Lobe in Different Neurodegenerative Disorders , 1999, Dementia and Geriatric Cognitive Disorders.

[795]  A. Harmoinen Bilirubin and metamizol do not interfere with the randox enzymatic creatinine test. An evaluation of a new enzymatic creatinine determination method. , 1996, European journal of clinical chemistry and clinical biochemistry : journal of the Forum of European Clinical Chemistry Societies.

[796]  P. Tittmann,et al.  Crystalline mitochondrial inclusion bodies isolated from creatine depleted rat soleus muscle. , 1997, Journal of cell science.

[797]  M. Jägerstad,et al.  Creatinine and Maillard Reaction Products as Precursors of Mutagenic Compounds Formed in Fried Beef , 1983 .

[798]  J. Balligand,et al.  Reversible S-nitrosation of creatine kinase by nitric oxide in adult rat ventricular myocytes. , 1998, Journal of molecular and cellular cardiology.

[799]  Mati Pääsuke,et al.  Effect of creatine supplementation during rapid body mass reduction on metabolism and isokinetic muscle performance capacity , 1998, European Journal of Applied Physiology and Occupational Physiology.

[800]  E. Marliss,et al.  Gyrate atrophy of the choroid and retina with hyperornithinemia. , 1975, American journal of ophthalmology.

[801]  J. Balschi,et al.  Contractile failure and high-energy phosphate turnover during hypoxia: 31P-NMR surface coil studies in living rat. , 1987, Circulation research.

[802]  F. Dolgener,et al.  The effect of creatine supplementation on two 700-m maximal running bouts. , 1997, International journal of sport nutrition.

[803]  K. Tsukada,et al.  The uptake of creatine by various tissues from a mouse bearing tumor cells. , 1984, Biochimica et biophysica acta.

[804]  P. Lipton,et al.  Reduced ATP concentration as a basis for synaptic transmission failure during hypoxia in the in vitro guinea‐pig hippocampus , 1982, The Journal of physiology.

[805]  R. D'Hooge,et al.  Guanidino compound levels in brain regions of non-dialyzed uremic patients , 1995, Neurochemistry International.

[806]  T. Yorifuji,et al.  Taurocyamine-utilizing mutants from a wild-type strain of Pseudomonas. , 1983, Journal of applied biochemistry.

[807]  M. Wyss,et al.  Intracellular compartmentation, structure and function of creatine kinase isoenzymes in tissues with high and fluctuating energy demands: the 'phosphocreatine circuit' for cellular energy homeostasis. , 1992, The Biochemical journal.

[808]  J. Roberts,et al.  Feeding a creatine analogue delays ATP depletion and onset of rigor in ischemic heart. , 1982, The American journal of physiology.

[809]  J. Weisburger,et al.  Characterization of aminoalkylimidazol-4-one mutagens from liquid-reflux models. , 1989, Mutation research.

[810]  R. Weleber,et al.  Molecular basis of ornithine aminotransferase defect in gyrate atrophy. , 1991, Progress in clinical and biological research.

[811]  L. Bjeldanes,et al.  Identification of the mutagens in cooked beef. , 1986, Environmental health perspectives.

[812]  R. Tuan,et al.  Creatine kinase activity is required for mineral deposition and matrix synthesis in endochondral growth cartilage. , 1992, Bone and mineral.

[813]  C. Thorup,et al.  Macula densa derived nitric oxide in regulation of glomerular capillary pressure. , 1996, Kidney international.

[814]  V. Kupriyanov,et al.  The role of phosphocreatine and ATP in contraction of normal and ischemic heart. , 1987, Biomedica biochimica acta.

[815]  S. Shimizu,et al.  Crystallization and Characterization of Sarcosine Oxidase from Alcaligenes denitrificans subsp. denitrificans , 1987 .

[816]  B. Rajagopalan,et al.  Mitral regurgitation: impaired systolic function, eccentric hypertrophy, and increased severity are linked to lower phosphocreatine/ATP ratios in humans. , 1998, Circulation.

[817]  M. Walser,et al.  Creatinine excretion as a measure of protein nutrition in adults of varying age. , 1987, JPEN. Journal of parenteral and enteral nutrition.

[818]  M. Kuroda Study on impaired metabolism of guanidinoacetic acid in chronic renal failure rabbits with special reference to impaired conversion of arginine to guanidinoacetic acid. , 1993, Nephron.

[819]  R. Huber,et al.  Crystal structure determination, refinement and molecular model of creatine amidinohydrolase from Pseudomonas putida. , 1988, Journal of molecular biology.

[820]  T. Eling,et al.  Prostaglandin H synthase-dependent formation of the direct-acting mutagen 2-nitro-3-methylimidazo[4,5-f]quinoline (nitro-IQ) from IQ. , 1993, Mutation research.

[821]  Fujioka Motoji,et al.  Rat guanidinoacetate methyltransferase: mutation of amino acids within a common sequence motif of mammalian methyltransferase does not affect catalytic activity but alters proteolytic susceptibility. , 1992 .

[822]  C. Denis,et al.  ATP synthesis kinetic properties of mitochondria isolated from the rat extensor digitorum longus muscle depleted of creatine with beta-guanidinopropionic acid. , 1994, Biochimica et biophysica acta.

[823]  J. Dinning,et al.  The influence of pteroylglutamic acid and vitamin B12 on the metabolism of pyridine-fed rats. , 1950, The Journal of nutrition.

[824]  G. Yen,et al.  Antimutagenic effect of methanolic extracts from peanut hulls. , 1996, Bioscience, biotechnology, and biochemistry.

[825]  E. Holme,et al.  Mitochondrial DNA deletions in inclusion body myositis. , 1993, Brain : a journal of neurology.

[826]  A. Debnath,et al.  Mutagenic activity of a series of synthetic and naturally occurring heterocyclic amines in Salmonella. , 1992, Mutation research.

[827]  M. R. Sayen,et al.  Insulin responsiveness of CK-M and CK-B mRNA in the diabetic rat heart. , 1991, The American journal of physiology.

[828]  W. Ellington Short Communication: Arginine Kinase and Creatine Kinase Appear to be Present in the Same Cells of an Echinoderm Muscle , 1991 .

[829]  M. Hirose,et al.  Enhancement of hepatocarcinogenesis by combined administration of food-derived heterocyclic amines at low doses in the rat. , 1996, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.

[830]  Y. Ohira,et al.  Thermogenic responses to high-energy phosphate contents and/or hindlimb suspension in rats. , 1996, The Japanese journal of physiology.

[831]  A. Emery Duchenne muscular dystrophy. Genetic aspects, carrier detection and antenatal diagnosis. , 1980, British medical bulletin.

[832]  S. Carpenter,et al.  The Kearns-Shy syndrome. A multisystem disease with mitochondrial abnormality demonstrated in skeletal muscle and skin. , 1973, Journal of the neurological sciences.

[833]  R. Panizzutti,et al.  Inhibition of creatine kinase by S‐nitrosoglutathione , 1996, FEBS letters.

[834]  M. Rudin,et al.  Dihydropyridine calcium antagonists reduce the consumption of high-energy phosphates in the rat brain. A study using combined 31P/1H magnetic resonance spectroscopy and 31P saturation transfer. , 1989, The Journal of pharmacology and experimental therapeutics.

[835]  R. Huber,et al.  Crystal structure analysis, refinement and enzymatic reaction mechanism of N-carbamoylsarcosine amidohydrolase from Arthrobacter sp. at 2.0 A resolution. , 1992, Journal of molecular biology.

[836]  L. Spriet,et al.  Importance of muscle phosphocreatine during intermittent maximal cycling. , 1996, Journal of applied physiology.

[837]  R. Ferrari,et al.  "Myocardial stunning" remaining questions. , 1998, Cardiovascular research.

[838]  R. Bryan,et al.  Phosphorus magnetic resonance spectroscopy of patients with mitochondrial cytopathies demonstrates decreased levels of brain phosphocreatine , 1990, Annals of neurology.

[839]  A. From,et al.  ATP synthesis kinetics and mitochondrial function in the postischemic myocardium as studied by 31P NMR. , 1988, The Journal of biological chemistry.

[840]  S. Savasta,et al.  Infantile mitochondria encephalomyopathies: report on 4 cases. , 1993, European neurology.

[841]  D. Wallace,et al.  Mitochondrial DNA mutations and neuromuscular disease. , 1989, Trends in genetics : TIG.

[842]  Osamu Terada,et al.  Properties of Crystalline Creatinine Deiminase from Corynebacterium lilium , 1980 .

[843]  Y. Ohira,et al.  Intramitochondrial inclusions caused by depletion of creatine in rat skeletal muscles. , 1988, The Japanese journal of physiology.

[844]  S. Mirvish The etiology of gastric cancer. Intragastric nitrosamide formation and other theories. , 1983, Journal of the National Cancer Institute.

[845]  E. Bergamini,et al.  Changes of glycogen metabolism in phosphorylcreatine-depleted muscles taken from rats fed with beta-guanidine propionate. , 1989, Archives internationales de physiologie et de biochimie.

[846]  S. R. Nash,et al.  Assignment of the creatine transporter gene (SLC6A8) to human chromosome Xq28 telomeric to G6PD. , 1995, Genomics.

[847]  B. Gusterson,et al.  Metabolic activation and DNA binding of food mutagens and other environmental carcinogens in human mammary epithelial cells. , 1996, Carcinogenesis.

[848]  L. Liotta,et al.  Cyclocreatine inhibits stimulated motility in tumor cells possessing creatine kinase , 1998, International Journal of Cancer.

[849]  I. Macdonald,et al.  Carbohydrate ingestion augments creatine retention during creatine feeding in humans. , 1996, Acta physiologica Scandinavica.

[850]  M. Gonella,et al.  Factors affecting the metabolic production of methylguanidine. , 1975, Clinical science and molecular medicine.

[851]  C. Davis,et al.  Studies on the mutagenic activation of heterocyclic amines by cynomolgus monkey, rat and human microsomes show that cynomolgus monkeys have a low capacity to N-oxidize the quinoxaline-type heterocyclic amines. , 1993, Cancer letters.

[852]  K. Wakabayashi,et al.  Dose-response study of MeIQx carcinogenicity in F344 male rats. , 1994, Cancer letters.

[853]  A. Ferro-Luzzi,et al.  Relationship between fat-free mass and urinary excretion of creatinine and 3-methylhistidine in adult humans. , 1994, Journal of applied physiology.

[854]  T. Imanaka,et al.  Analysis of interaction between the Arthrobacter sarcosine oxidase and the coenzyme flavin adenine dinucleotide by site-directed mutagenesis , 1996, Applied and environmental microbiology.

[855]  J. Essigmann,et al.  Mutational and DNA Binding Specificity of the Carcinogen 2-Amino-3,8-dimethylimidazo[4,5-f]quinoxaline* , 1996, The Journal of Biological Chemistry.

[856]  E Hultman,et al.  Effect of oral creatine supplementation on skeletal muscle phosphocreatine resynthesis. , 1994, The American journal of physiology.

[857]  P. Sismondi,et al.  Creatine kinase BB isoenzyme levels in tumour cytosols and survival of breast cancer patients. , 1996, British Journal of Cancer.

[858]  P. D. De Deyn,et al.  Serum guanidino compound levels and clearances in uremic patients treated with continuous ambulatory peritoneal dialysis. , 1990, Nephron.

[859]  N. Brautbar Skeletal myopathy in uremia: abnormal energy metabolism. , 1983, Kidney international. Supplement.

[860]  M. Tarnopolsky,et al.  Creatine monohydrate increases strength in patients with neuromuscular disease , 1999, Neurology.

[861]  P. Hespel,et al.  Effect of Creatine Loading on Endurance Capacity and Sprint Power in Cyclists , 1998, International journal of sports medicine.

[862]  P. McHale,et al.  Prolonged myocardial nucleotide depletion after brief ischemia in the open-chest dog. , 1982, The American journal of physiology.

[863]  T. Sugimura,et al.  Absence of p53 Mutations in Rat Colon Tumors Induced by 2‐Amino‐6‐methyldipyrido[1,2‐a:3′, 2′‐d]imidazole, 2‐Amino‐3‐methylimidazo[4,5‐f]quinoline, or 2‐Amino‐1‐methyl‐6‐phenylimidazo[4,5‐b]pyridine , 1994, Japanese journal of cancer research : Gann.

[864]  B. Wieringa,et al.  Maintained coupling of oxidative phosphorylation to creatine kinase activity in sarcomeric mitochondrial creatine kinase-deficient mice. , 1998, Journal of molecular and cellular cardiology.

[865]  S. Akamatsu,et al.  Bacterial decomposition of creatine. III. The pathway of creatine decomposition. , 1952, Enzymologia.

[866]  R. Weleber,et al.  Molecular genetics of ornithine aminotransferase defect in gyrate atrophy. , 1989, Progress in clinical and biological research.

[867]  D. Bentley,et al.  Arginine Kinase Expression and Localization in Growth Cone Migration , 1998, The Journal of Neuroscience.

[868]  B. Korzeniewski,et al.  Dextran strongly increases the Michaelis constants of oxidative phosphorylation and of mitochondrial creatine kinase in heart mitochondria. , 1998, European journal of biochemistry.

[869]  A. Cooper,et al.  Progressive muscular dystrophy: a review. , 1962, Revue canadienne de biologie.

[870]  A. Murzin Can homologous proteins evolve different enzymatic activities? , 1993, Trends in biochemical sciences.

[871]  A. Mori,et al.  Guanidino compounds in hyperargininemia. , 1987, The Tohoku journal of experimental medicine.

[872]  S. Seifter,et al.  Uptake of creatine by cultured cells. , 1980, Archives of biochemistry and biophysics.

[873]  R. Blakely,et al.  Expression of the rat brain creatine transporter in situ and in transfected HeLa cells. , 1996, Developmental neuroscience.

[874]  H. Laak,et al.  Mitochondrial creatine kinase containing crystals, creatine content and mitochondrial creatine kinase activity in chronic progressive external ophthalmoplegia , 1992, Neuromuscular Disorders.

[875]  R. Huber,et al.  Crystallographic and fluorescence studies of ligand binding to N-carbamoylsarcosine amidohydrolase from Arthrobacter sp. , 1996, Journal of molecular biology.

[876]  K. Martin,et al.  Specific targeting of tumor cells by the creatine analog cyclocreatine. , 1996, International journal of oncology.

[877]  Evidence for the Role of Pancreatic Acinar Cells in the Production of Ornithine and Guanidinoacetic Acid by l‐Arginine: Glycine Amidinotransferase , 1995, Pancreas.

[878]  H. Betz,et al.  Primary structure and functional expression of a choline transporter expressed in the rat nervous system , 1992, FEBS letters.

[879]  M. Jägerstad,et al.  Effects of monosaccharides and disaccharides on the formation of food mutagens in model systems. , 1990, Mutation research.

[880]  W. B. Derry,et al.  Taxol differentially modulates the dynamics of microtubules assembled from unfractionated and purified beta-tubulin isotypes. , 1997, Biochemistry.

[881]  K. Nakamura,et al.  Synthesis of creatol, a hydroxyl radical adduct of creatinine and its increase by puromycin aminonucleoside in isolated rat hepatocytes. , 1998, Free radical research.

[882]  C. Bosco,et al.  Effect of Oral Creatine Supplementation on Jumping and Running Performance , 1997, International journal of sports medicine.

[883]  C. Davis,et al.  Protection by chlorophyllin and indole-3-carbinol against 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP)-induced DNA adducts and colonic aberrant crypts in the F344 rat. , 1995, Carcinogenesis.

[884]  S. Serrano,et al.  Selective diaphragmatic mitochondrial abnormalities in a patient with marked air flow obstruction. , 1996, Ultrastructural pathology.

[885]  D. Wilson,et al.  Effects of chronic administration of doxorubicin on myocardial creatine phosphokinase and antioxidant defenses and levels of lipid peroxidation in tissues and plasma of rats. , 1989, Journal of biochemical toxicology.

[886]  M. Wagner,et al.  Folate utilization by monomeric versus heterotetrameric sarcosine oxidases. , 1997, Archives of biochemistry and biophysics.

[887]  S. Danielsen,et al.  Characterization of the Escherichia coli codBA operon encoding cytosine permease and cytosine deaminase , 1992, Molecular microbiology.

[888]  C. Bond,et al.  Structure and mechanism of a proline-specific aminopeptidase from Escherichia coli. , 1998, Proceedings of the National Academy of Sciences of the United States of America.

[889]  N. Doggett,et al.  Identification of a testis-expressed creatine transporter gene at 16p11.2 and confirmation of the X-linked locus to Xq28. , 1996, Genomics.

[890]  C. Maganaris,et al.  Creatine supplementation enhances maximum voluntary isometric force and endurance capacity in resistance trained men. , 1998, Acta physiologica Scandinavica.

[891]  M. Engelhardt,et al.  Creatine supplementation in endurance sports. , 1998, Medicine and science in sports and exercise.

[892]  J. H. Quastel,et al.  Effects of ouabain on cerebral metabolism and transport mechanisms in vitro. , 1962, The Biochemical journal.

[893]  B. Ames,et al.  Heterocyclic amines formed by cooking food: comparison of bioassay results with other chemicals in the Carcinogenic Potency Database. , 1994, Cancer letters.

[894]  A. Hunter Creatine and creatinine , 1928 .

[895]  P. Babbitt,et al.  The principal islet of the coho salmon (Oncorhyncus kisutch) contains the BB isoenzyme of creatine kinase , 1992, Journal of protein chemistry.

[896]  E Hultman,et al.  Skeletal muscle energy metabolism and fatigue during intense exercise in man. , 1991, Science progress.

[897]  N. Nelson Presynaptic events involved in neurotransmission , 1993, Journal of Physiology-Paris.

[898]  A. Wittwer,et al.  Identification of the folate-binding proteins of rat liver mitochondria as dimethylglycine dehydrogenase and sarcosine dehydrogenase. Purification and folate-binding characteristics. , 1981, The Journal of biological chemistry.

[899]  Y. Nakamura,et al.  A reordering of human chromosome 19 long-arm DNA markers and identification of markers flanking the myotonic dystrophy locus. , 1989, Genomics.

[900]  W. Rose The Metabolism of Creatine and Creatinine , 1933 .

[901]  P. D. De Deyn,et al.  Guanidino compound metabolism in arginine-free diet induced hyperammonemia. , 1991, Enzyme.

[902]  M. Beal,et al.  Creatine and Cyclocreatine Attenuate MPTP Neurotoxicity , 1998, Experimental Neurology.

[903]  S. Mirvish,et al.  Creatinine: a food component that is nitrosated-denitrosated to yield methylurea , 1982 .

[904]  J. Hoerter,et al.  Myocardial adaptation to creatine deficiency in rats fed with beta-guanidinopropionic acid, a creatine analogue. , 1990, American Journal of Physiology.

[905]  D. J. Wolff,et al.  Inactivation of nitric oxide synthase isoforms by diaminoguanidine and NG-amino-L-arginine. , 1996, Archives of biochemistry and biophysics.

[906]  D. Carling,et al.  Dual regulation of the AMP‐activated protein kinase provides a novel mechanism for the control of creatine kinase in skeletal muscle , 1998, The EMBO journal.

[907]  A. Desideri,et al.  Diastolic function and creatine phosphate : an echocardiographic study , 1993 .

[908]  D. Gomez,et al.  Dietary heterocyclic amines as potential human carcinogens: experimental data from nonhuman primates. , 1996, In vivo.

[909]  E. Snyderwine Some perspectives on the nutritional aspects of breast cancer research. Food‐derived heterocyclic amines as etiologic agents in human mammary cancer , 1994, Cancer.

[910]  N. Nelson,et al.  Molecular characterization of four pharmacologically distinct gamma-aminobutyric acid transporters in mouse brain [corrected]. , 1993, The Journal of biological chemistry.

[911]  G. Adams,et al.  Running performance and cardiovascular capacity are not impaired in creatine-depleted rats. , 1995, Journal of applied physiology.

[912]  P. Chiang,et al.  Perturbation of biochemical transmethylations by 3-deazaadenosine in vivo. , 1979, Biochemical pharmacology.

[913]  O. Selberg,et al.  The creatinine approach to estimate skeletal muscle mass in patients with cirrhosis , 1996, Hepatology.

[914]  B. C. Abbott,et al.  Creatine and the control of energy metabolism in cardiac and skeletal muscle cells in culture. , 1974, Journal of molecular and cellular cardiology.

[915]  E. Hopmans,et al.  The identification of a new heterocyclic amine mutagen from a heated mixture of creatine, glutamic acid and glucose. , 1991, Mutation research.

[916]  C. Sylvén,et al.  Creatine supplementation in chronic heart failure increases skeletal muscle creatine phosphate and muscle performance. , 1995, Cardiovascular research.

[917]  T. Hamaoka,et al.  EFFECTS OF ORAL CREATINE SUPPLEMENTATION ON HIGH- AND LOW-INTENSITY GRIP EXERCISE PERFORMANCE 1427 , 1997 .

[918]  F. Apple,et al.  Mitochondrial creatine kinase activity alterations in skeletal muscle during long-distance running. , 1986, Journal of applied physiology.

[919]  H. Blum,et al.  Protecting myocardial creatine kinase activity during reperfusion improves bioenergetics and contractile function. , 1993, The Journal of surgical research.

[920]  K. Konishi,et al.  Reversible inactivation of recombinant rat liver guanidinoacetate methyltransferase by glutathione disulfide. , 1991, Archives of biochemistry and biophysics.

[921]  J. Halow,et al.  Role of MgADP in the development of diastolic dysfunction in the intact beating rat heart. , 1997, The Journal of clinical investigation.

[922]  B. Korecky,et al.  Effect of creatine depletion on myocardial mechanics. , 1987, Basic research in cardiology.

[923]  J. Gustafsson,et al.  Cooked-food mutagens: current knowledge of formation and biological significance. , 1990, Mutagenesis.

[924]  T. W. Esders,et al.  Purification and properties of creatinine iminohydrolase from Flavobacterium filamentosum. , 1985, The Journal of biological chemistry.

[925]  C. Obie,et al.  Ornithine delta-aminotransferase mutations in gyrate atrophy. Allelic heterogeneity and functional consequences. , 1992, The Journal of biological chemistry.

[926]  H. Degani,et al.  Estrogen-induced changes in high-energy phosphate metabolism in rat uterus: 31P NMR studies. , 1984, Biochemistry.

[927]  M. Nevill,et al.  The effects of oral creatine supplementation on performance in single and repeated sprint swimming. , 1998, Journal of sports sciences.

[928]  E. Nieves,et al.  Identification of the covalent flavin attachment site in sarcosine oxidase. , 1998, Biochemistry.

[929]  F. Plum,et al.  Cerebral energy metabolism during experimental status epilepticus. , 1975, Journal of neurochemistry.

[930]  A. Koretsky,et al.  Phosphocreatine protects ATP from a fructose load in transgenic mouse liver expressing creatine kinase. , 1991, The American journal of physiology.

[931]  U. Zor,et al.  Parathyroid hormone induction of creatine kinase activity and DNA synthesis is mimicked by phospholipase C, diacylglycerol and phorbol ester. , 1987, Biochimica et biophysica acta.

[932]  Lening Zhang,et al.  Sequence Analysis of Sarcosine Oxidase and Nearby Genes Reveals Homologies with Key Enzymes of Folate One-carbon Metabolism (*) , 1995, The Journal of Biological Chemistry.

[933]  F. Oerlemans,et al.  Mice deficient in ubiquitous mitochondrial creatine kinase are viable and fertile. , 1995, Biochimica et biophysica acta.

[934]  H. Hayatsu,et al.  Inhibitory Effects of Food-Coloring Agents Derived from Monascus on the Mutagenicity of Heterocyclic Amines , 1997 .

[935]  D. Wallace,et al.  A mouse model for mitochondrial myopathy and cardiomyopathy resulting from a deficiency in the heart/muscle isoform of the adenine nucleotide translocator , 1997, Nature Genetics.

[936]  J. Ackerman,et al.  Quantitative 31P nuclear magnetic resonance analysis of metabolite concentrations in Langendorff-perfused rabbit hearts. , 1985, Biophysical journal.

[937]  H. Beard Creatine and Creatinine Metabolism. , 1943 .

[938]  M. Yasuda,et al.  Simultaneous determination of creatinine, creatine, and guanidinoacetic acid in human serum and urine using liquid chromatography-atmospheric pressure chemical ionization mass spectrometry. , 1997, Analytical biochemistry.

[939]  D. Conte Camerino,et al.  Effects of high energy phosphates and L-arginine on the electrical parameters of ischemic-reperfused rat skeletal muscle fibers. , 1995, European journal of pharmacology.

[940]  P. Zaniol,et al.  Brain 31P‐magnetic resonance spectroscopy in mitochondrial cytopathies , 1992, Annals of neurology.

[941]  M. Naoi,et al.  Food-derived heterocyclic amines, 3-amino-1,4-dimethyl-5H-pyrido[4,3-b]indole and related amines, as inhibitors of monoamine metabolism. , 1994, Journal of neural transmission. Supplementum.

[942]  M. Knize,et al.  Proposed structures for an amino-dimethylimidazofuropyridine mutagen in cooked meats. , 1990, Carcinogenesis.

[943]  S. Mirvish,et al.  Creatinine nitrosation to yield 5-oxocreatinine 5-oxime and 1-methyl-5-oxohydantoin 5-oxime: Reaction rates, identification of syn and anti oxime isomers, and their interconversion by nitrite , 1993 .

[944]  P. Ferdinande,et al.  Mitochondrial function in myocardial stunning. , 1991, Journal of molecular and cellular cardiology.

[945]  P. Greenhaff The nutritional biochemistry of creatine , 1997 .

[946]  M. Neeman,et al.  Cyclocreatine accumulation leads to cellular swelling in C6 glioma multicellular spheroids: diffusion and one-dimensional chemical shift nuclear magnetic resonance microscopy. , 1995, Cancer research.

[947]  A. Thompson,et al.  Biochemical changes within a multiple sclerosis plaque in vivo. , 1991, Journal of neurology, neurosurgery, and psychiatry.

[948]  R. Brandsch,et al.  Rat liver dimethylglycine dehydrogenase. Flavinylation of the enzyme in hepatocytes in primary culture and characterization of a cDNA clone. , 1991, European journal of biochemistry.

[949]  H. Towle,et al.  On the mechanism of the alterations of rat kidney transamidinase activities by diet and hormones. , 1982, Advances in experimental medicine and biology.

[950]  T. Sugimura,et al.  Activated oncogenes in a rat hepatocellular carcinoma induced by 2-amino-3-methylimidazo[4,5-f]quinoline. , 1985, Japanese journal of cancer research : Gann.

[951]  Y. Ohira,et al.  Responses of beta-adrenoceptor in rat soleus to phosphorus compound levels and/or unloading. , 1994, The American journal of physiology.

[952]  T. Uegaito,et al.  Dobutamine prevents both myocardial stunning and phosphocreatine overshoot without affecting ATP level. , 1993, Journal of molecular and cellular cardiology.

[953]  G. Gerton,et al.  Guanidinoacetate methyltransferase in the mouse: extensive expression in Sertoli cells of testis and in microvilli of caput epididymis. , 1994, Biology of reproduction.

[954]  S. Houser,et al.  ENHANCEMENT OF THE RECOVERY OF RAT HEARTS AFTER PROLONGED COLD STORAGE BY CYCLOCREATINE PHOSPHATE1,2 , 1994, Transplantation.

[955]  Y. Ohira,et al.  Responses of contractile properties in rat soleus to high-energy phosphates and/or unloading. , 1994, The Japanese journal of physiology.

[956]  G. Stokes,et al.  Effect of dialysis on circulating Na,K ATPase inhibitor in uremic patients. , 1990, Nephron.

[957]  M. Nikolova-Karakashian,et al.  Influence of cholesterol on sphingomyelin metabolism and hemileaflet fluidity of rat liver plasma membranes. , 1992, Biochimie.

[958]  G. Radda,et al.  Alterations in the myocardial creatine kinase system during chronic anaemic hypoxia. , 1994, Cardiovascular research.

[959]  S. Udenfriend,et al.  Biosynthesis and disposition of γ-guanidinobutyric acid in mammalian tissues , 1963 .

[960]  P. Vineis,et al.  Dietary phenolics as anti-mutagens and inhibitors of tobacco-related DNA adduction in the urothelium of smokers. , 1996, Carcinogenesis.

[961]  Arend Heerschap,et al.  Altered Ca2+ Responses in Muscles with Combined Mitochondrial and Cytosolic Creatine Kinase Deficiencies , 1997, Cell.

[962]  P. Douglas,et al.  Creatine kinase kinetics studied by phosphorus-31 nuclear magnetic resonance in a canine model of chronic hypertension-induced cardiac hypertrophy , 1992 .

[963]  E. Braunwald,et al.  Preservation of high-energy phosphates by verapamil in reperfused myocardium. , 1984, Circulation.

[964]  J. Gusella,et al.  Molecular pathology of gyrate atrophy of the choroid and retina due to ornithine aminotransferase deficiency. , 1991, Molecular biology & medicine.

[965]  R. Jennings,et al.  Total Ischemia in Dog Hearts, in Vitro: 1. Comparison of High Energy Phosphate Production, Utilization, and Depletion, and of Adenine Nucleotide Catabolism in Total Ischemia in Vitro vs. Severe Ischemia in Vivo , 1981, Circulation research.

[966]  J. Roché,et al.  Sur la spécificité de certaines déguanidases bactériennes génératrices d'urée et sur l'argininedihydrolase , 1950 .

[967]  S. Dunn,et al.  Induction of creatininase activity in chronic renal failure: timing of creatinine degradation and effect of antibiotics. , 1997, American journal of kidney diseases : the official journal of the National Kidney Foundation.

[968]  Recombinant rat guanidinoacetate methyltransferase: structure and function of the NH2-terminal region as deduced by limited proteolysis. , 1991, Archives of biochemistry and biophysics.

[969]  Z. Farfel,et al.  Mitochondrial abnormalities in oculopharyngeal muscular dystrophy , 1991, Muscle & nerve.

[970]  E. Mellanby,et al.  On creatin‐destroying bacilli in the intestine, and their isolation , 1912, The Journal of physiology.

[971]  Jia Newcombe,et al.  High Resolution Proton NMR Spectroscopy of Multiple Sclerosis Lesions , 1995, Journal of neurochemistry.

[972]  F. Satolli,et al.  Creatine phosphate in the rehabilitation of patients with muscle hypotonotrophy of the lower extremity , 1989 .

[973]  J. Morrison,et al.  Biochemistry of the phosphagens and related guanidines. , 1958, Physiological reviews.

[974]  K. Konishi,et al.  Rat guanidinoacetate methyltransferase. Effect of site-directed alteration of an aspartic acid residue that is conserved across most mammalian S-adenosylmethionine-dependent methyltransferases. , 1994, The Journal of biological chemistry.

[975]  Björn Ekblom,et al.  Creatine supplementation and dynamic high‐intensity intermittent exercise , 1993 .

[976]  R. D'Hooge,et al.  Convulsive action and toxicity of uremic guanidino compounds: behavioral assessment and relation to brain concentration in adult mice , 1992, Journal of the Neurological Sciences.

[977]  J. Walker,et al.  Enhanced ability of skeletal muscle containing cyclocreatine phosphate to sustain ATP levels during ischemia following beta-adrenergic stimulation. , 1987, The Journal of biological chemistry.

[978]  Ole A. Andreassen,et al.  Neuroprotective effects of creatine in a transgenic animal model of amyotrophic lateral sclerosis , 1999, Nature Medicine.

[979]  M. Mattson,et al.  Impairment of Glucose and Glutamate Transport and Induction of Mitochondrial Oxidative Stress and Dysfunction in Synaptosomes by Amyloid β‐Peptide: Role of the Lipid Peroxidation Product 4‐Hydroxynonenal , 1997, Journal of neurochemistry.

[980]  V. Saks,et al.  Adaptation of cardiac contractile function to conditions of chronic energy deficiency. , 1989, Journal of molecular and cellular cardiology.

[981]  Arend Heerschap,et al.  Skeletal muscles of mice deficient in muscle creatine kinase lack burst activity , 1993, Cell.

[982]  B. Sjödin,et al.  Creatine supplementation per se does not enhance endurance exercise performance. , 1993, Acta physiologica Scandinavica.

[983]  R. Veech,et al.  Effects of pH and free Mg2+ on the Keq of the creatine kinase reaction and other phosphate hydrolyses and phosphate transfer reactions. , 1979, The Journal of biological chemistry.

[984]  H. Rosenberg,et al.  The determination and distribution of phosphocreatine in animal tissues. , 1952, The Biochemical journal.

[985]  P. Zaniol,et al.  Phosphorus Magnetic Resonance Spectroscopy in Cluster Headache , 1997, Neurology.

[986]  V. Saks,et al.  Mathematical model of compartmentalized energy transfer: Its use for analysis and interpretation of 31 P-NMR studies of isolated heart of creatine kinase deficient mice , 1998 .

[987]  M. Neeman,et al.  Cyclocreatine transport and cytotoxicity in rat glioma and human ovarian carcinoma cells: 31P-NMR spectroscopy. , 1996, The American journal of physiology.

[988]  K. Campbell,et al.  The effect of changes in iron redox state on the activity of enzymes sensitive to modification of SH groups. , 1993, Archives of biochemistry and biophysics.

[989]  F. Kadlubar,et al.  Metabolic activation of N-hydroxy arylamines and N-hydroxy heterocyclic amines by human sulfotransferase(s). , 1995, Cancer research.

[990]  C. Obie,et al.  Ornithine &Aminotransferase Mutations in Gyrate Atrophy , 1992 .

[991]  T. Yokozawa,et al.  In vivo effect of hydroxyl radical scavenger on methylguanidine production from creatinine. , 1997, Nephron.

[992]  K. Turteltaub,et al.  Distribution and metabolism of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) in female rats and their pups at dietary doses. , 1998, Carcinogenesis.

[993]  H. Blum,et al.  Reversible injury: creatinine kinase recovery restores bioenergetics and function. , 1996, The Journal of surgical research.

[994]  Y. Inouye,et al.  Purification and characterization of creatinine amidohydrolase of Alcaligenes origin , 1986 .

[995]  D. Holtzman,et al.  Brain creatine kinase reaction rates and reactant concentrations during seizures in developing rats , 1997, Epilepsy Research.

[996]  A. Koretsky,et al.  The role of creatine kinase in inhibition of mitochondrial permeability transition , 1997, FEBS letters.

[997]  Charles D. Smith,et al.  Frontal lobe phosphorus metabolism and neuropsychological function in aging and in alzheimer's disease , 1995, Annals of neurology.

[998]  Patrizia LoPresti,et al.  Direct determination of creatine kinase equilibrium constants with creatine or cyclocreatine substrate. , 1989, Biochimica et biophysica acta.

[999]  G. Radda,et al.  Imaging of human brain creatine kinase activity in vivo , 1989, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.

[1000]  R. Goldman,et al.  Synthesis of creatine in nephrectomized rats. , 1959, The American journal of physiology.

[1001]  M. D. De Buyzere,et al.  Normal reference values for creatine, creatinine, and carnitine are lower in vegetarians. , 1989, Clinical chemistry.

[1002]  A. Griesmacher,et al.  In Vitro Effects of Hypoxia and Reoxygenation on Human Umbilical Endothelial Cells , 1994, European journal of clinical chemistry and clinical biochemistry : journal of the Forum of European Clinical Chemistry Societies.

[1003]  Y. Matsumoto,et al.  Effects of gamma-glutamylcysteine ethyl ester on heart mitochondrial creatine kinase activity: involvement of sulfhydryl groups. , 1998, European journal of pharmacology.

[1004]  Y. Giat,et al.  The toxicity of guanidino compounds in the red blood cell in uremia and the effects of hemodialysis. , 1982, Nephron.

[1005]  A. Koretsky,et al.  Functional Equivalence of Creatine Kinase Isoforms in Mouse Skeletal Muscle* , 1997, The Journal of Biological Chemistry.

[1006]  E. Hopmans,et al.  Analysis of foods for heterocyclic aromatic amine carcinogens by solid-phase extraction and high-performance liquid chromatography. , 1997, Journal of chromatography. A.

[1007]  T. Wallimann,et al.  Mitochondrial Creatine Kinase Is a Prime Target of Peroxynitrite-induced Modification and Inactivation* , 1998, The Journal of Biological Chemistry.

[1008]  T. Yokozawa,et al.  Comparison of toxic effects of methylguanidine, guanidinosuccinic acid and creatinine in rats with adenine-induced chronic renal failure. , 1989, Nephron.

[1009]  P. van Hecke,et al.  Phosphocreatine resynthesis is not affected by creatine loading. , 1999, Medicine and science in sports and exercise.

[1010]  W. Warr,et al.  Regional distribution of a creatine transporter in rat auditory brainstem: an in-situ hybridization study , 1996, Hearing Research.

[1011]  A. Wechsler,et al.  Depressed High‐energy Phosphate Content in Hypertrophied Ventricles of Animal and Man: The Biologic Basis for Increased Sednsitivity to Ischemic Injury , 1982, Annals of surgery.

[1012]  C. D. Fitch,et al.  Phosphocreatine does not inhibit rabbit muscle phosphofructokinase or pyruvate kinase. , 1979, The Journal of biological chemistry.

[1013]  Y. Takamitsu,et al.  Effect of low protein diet and surplus of essential amino acids on the serum concentration and the urinary excretion of methylguanidine and guanidinosuccinic acid in chronic renal failure. , 1979, Nephron.

[1014]  T. Yokozawa,et al.  Variations in the distribution of methylguanidine with the progression of renal failure after methylguanidine loading. , 1989, Nephron.

[1015]  W. Kraemer,et al.  Creatine supplementation enhances muscular performance during high-intensity resistance exercise. , 1997, Journal of the American Dietetic Association.

[1016]  G. Radda,et al.  The utilisation of creatine and its analogues by cytosolic and mitochondrial creatine kinase. , 1996, Biochimica et biophysica acta.

[1017]  J. Ingwall,et al.  Chronic administration of cardiovascular drugs: altered energetics and transmembrane signaling. , 1992, The American journal of physiology.

[1018]  L. Mcnaughton,et al.  The effects of creatine supplementation on high-intensity exercise performance in elite performers , 1998, European Journal of Applied Physiology and Occupational Physiology.

[1019]  M. Panteghini Serum isoforms of creatine kinase isoenzymes. , 1988, Clinical biochemistry.

[1020]  C. Sylvén,et al.  Myocardial enzyme activities in patients with mitral regurgitation or mitral stenosis. , 1987, Cardiovascular research.

[1021]  J. Finkelstein,et al.  Methionine metabolism in mammals: the biochemical basis for homocystinuria. , 1974, Metabolism: clinical and experimental.

[1022]  D. K. Meyer,et al.  Effects of Creatine on Synthesis and Release of γ‐[3H]Aminobutyric Acid , 1990, Journal of neurochemistry.

[1023]  T. Strein,et al.  Determination of creatinine and other uremic toxins in human blood sera with micellar electrokinetic capillary electrophoresis. , 1997, Journal of chromatography. B, Biomedical sciences and applications.

[1024]  S. Kuroda,et al.  Sustained increase of methylguanidine in rats after amygdala or hippocampal kindling , 1995, Epilepsy Research.

[1025]  E Jüngling,et al.  Myocardial performance and free energy of ATP-hydrolysis in isolated rat hearts during graded hypoxia, reoxygenation and high Ke+-perfusion. , 1988, Journal of molecular and cellular cardiology.

[1026]  I. Polacheck,et al.  Creatinine metabolism in Cryptococcus neoformans and Cryptococcus bacillisporus , 1980, Journal of bacteriology.

[1027]  T. Sugimura,et al.  Structural determination of a new mutagenic heterocyclic amine, 2-amino-1,7,9-trimethylimidazo[4,5-g]quinoxaline (7,9-DiMeIgQx), present in beef extract. , 1994, Carcinogenesis.

[1028]  H. Wang,et al.  The structure-activity relationships of flavonoids as inhibitors of cytochrome P-450 enzymes in rat liver microsomes and the mutagenicity of 2-amino-3-methyl-imidazo[4,5-f]quinoline. , 1994, Mutagenesis.

[1029]  B. Rodriguez-Iturbe,et al.  Stimulation of tubular secretion of creatinine in health and in conditions associated with reduced nephron mass. Evidence for a tubular functional reserve. , 1998, Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association.

[1030]  G. Radda,et al.  Actions of the creatine analogue beta-guanidinopropionic acid on rat heart mitochondria. , 1994, Biochemical Journal.

[1031]  P. Vallance,et al.  Effects of guanidino and uremic compounds on nitric oxide pathways. , 1994, Kidney international.

[1032]  G. Radda,et al.  The creatine kinase equilibrium, free [ADP] and myosin ATPase in vascular smooth muscle cross-bridges. , 1995, Journal of theoretical biology.

[1033]  M. Cohn,et al.  Inhibition of rate of tumor growth by creatine and cyclocreatine. , 1993, Proceedings of the National Academy of Sciences of the United States of America.

[1034]  B. Witzenbichler,et al.  Antibody-mediated imbalance of myocardial energy metabolism. A causal factor of cardiac failure? , 1995, Circulation research.

[1035]  Z. Liron,et al.  Studies on uptake of γ-aminobutyric acid by mouse brain particles; toward the development of a model , 1988, Brain Research.

[1036]  R. Edwards,et al.  AND MUSCULAR DYSTROPHY , 1988 .

[1037]  C. D. Fitch,et al.  Creatine metabolism in skeletal muscle. I. Creatine movement across muscle membranes. , 1966, The Journal of biological chemistry.

[1038]  G. L. Kenyon,et al.  Creatine Kinase: Structure‐Activity Relationships , 2006 .

[1039]  T. Inubushi,et al.  Lateralized abnormality of high energy phosphate metabolism in the frontal lobes of patients with bipolar disorder detected by phase-encoded 31P-MRS , 1995, Psychological Medicine.

[1040]  Daniel L. Feeback,et al.  Metabolic myopathy produced by dinitrofluorobenzene inhibition of creatine phosphokinase , 1988, Journal of the Neurological Sciences.

[1041]  I. Macdonald,et al.  Effect of oral creatine supplementation on respiratory gas exchange and blood lactate accumulation during steady-state incremental treadmill exercise and recovery in man. , 1994, Clinical science.

[1042]  T. Annesley,et al.  Energy metabolism of skeletal muscle containing cyclocreatine phosphate. Delay in onset of rigor mortis and decreased glycogenolysis in response to ischemia or epinephrine. , 1980, The Journal of biological chemistry.

[1043]  B. Wieringa,et al.  The ubiquitous mitochondrial creatine kinase gene maps to a conserved region on human chromosome 15q15 and mouse chromosome 2 bands F1-F3. , 1994, Genomics.

[1044]  P. van Hecke,et al.  Caffeine counteracts the ergogenic action of muscle creatine loading. , 1996, Journal of applied physiology.

[1045]  Y. Ohira,et al.  Improved fatigue resistance not associated with maximum oxygen consumption in creatine-depleted rats. , 1997, Journal of applied physiology.

[1046]  D. Constantin-Teodosiu,et al.  Attenuation by creatine of myocardial metabolic stress in Brattleboro rats caused by chronic inhibition of nitric oxide synthase , 1995, British journal of pharmacology.

[1047]  A. Kuznetsov,et al.  The creatine kinase system and cardiomyopathy. , 1992, The American journal of cardiovascular pathology.

[1048]  V A Saks,et al.  Metabolic control and metabolic capacity: two aspects of creatine kinase functioning in the cells. , 1996, Biochimica et biophysica acta.

[1049]  F. Apple,et al.  Post-infarction left ventricular remodeling induces changes in creatine kinase mRNA and protein subunit levels in porcine myocardium. , 1997, The American journal of pathology.

[1050]  O. Simell,et al.  Gyrate atrophy of the choroid and retina. A five-year follow-up of creatine supplementation. , 1985, Ophthalmology.

[1051]  M. Perryman,et al.  Metabolic and diagnostic significance of creatine kinase isoenzymes. , 1991, Trends in cardiovascular medicine.

[1052]  R. Kaddurah-Daouk,et al.  Synthesis and creatine kinase inhibitory activity of non-hydrolyzable analogs of phosphocreatine , 1997 .

[1053]  M. Kilberg,et al.  Induction and decay of amino acid transport in the liver. Turnover of transport activity in isolated hepatocytes after stimulation by diabetes or glucagon. , 1984, The Journal of biological chemistry.

[1054]  M. Knize,et al.  Heterocyclic-Amine Mutagens/Carcinogens in Foods , 1990 .

[1055]  Molecular cloning and high expression of the Bacillus creatinase gene in Escherichia coli , 1993 .

[1056]  N. V. Lyulina,et al.  Hormone regulation of cardiac energy metabolism. I. Creatine transport across cell membranes of euthyroid and hyperthyroid rat heart. , 1985, Biochemical medicine.

[1057]  A. Connelly,et al.  Guanidinoacetate methyltransferase deficiency: new clinical features. , 1997, Pediatric neurology.

[1058]  M. Tsuji,et al.  Phosphocreatine and ATP regulation in the hypoxic developing rat brain. , 1995, Brain research. Developmental brain research.

[1059]  Gitomer Wl,et al.  Phosphate free perfusion prevents washout of tissue creatine in Langendorff perfused rabbit heart. , 1992 .

[1060]  V. Veksler,et al.  Ischaemic metabolic factors-high inorganic phosphate and acidosis--modulate mitochondrial creatine kinase functional activity in skinned cardiac fibres. , 1994, Journal of molecular and cellular cardiology.

[1061]  M. Francaux,et al.  Renal dysfunction accompanying oral creatine supplements , 1998, The Lancet.

[1062]  J. Loike,et al.  Extracellular creatine regulates creatine transport in rat and human muscle cells. , 1988, Proceedings of the National Academy of Sciences of the United States of America.

[1063]  G. Adams,et al.  Age dependence of myosin heavy chain transitions induced by creatine depletion in rat skeletal muscle. , 1995, Journal of applied physiology.

[1064]  T. Sugimura,et al.  Detection of 2‐Amino‐1‐methyl‐6‐(4‐hydroxyphenyl)imidazo[4,5‐b]pyridine in Broiled Beef , 1992, Japanese journal of cancer research : Gann.

[1065]  R. Klesges,et al.  Effects of ingesting supplements designed to promote lean tissue accretion on body composition during resistance training. , 1996, International journal of sport nutrition.

[1066]  I. Syllm-Rapoport,et al.  A mathematical model for the cell age-dependent decline of creatine in human cell cells. , 1984, Biomedica biochimica acta.

[1067]  L. Liotta,et al.  Tumor invasion and metastases: biochemical mechanisms. , 1988, Cancer treatment and research.

[1068]  A. Bershadsky,et al.  ATP-dependent regulation of cytoplasmic microtubule disassembly. , 1981, Proceedings of the National Academy of Sciences of the United States of America.

[1069]  C. Meester Bacterial mutagenicity of heterocyclic amines found in heat-processed food , 1989 .

[1070]  R. D'Hooge,et al.  Biochemical and histopathological changes in nephrectomized mice. , 1998, Metabolism: clinical and experimental.

[1071]  T. Goto,et al.  Bioactive compounds produced in animal tissues. II: Two hydantoin plant growth regulators isolated from inflamed rabbit skin tissue , 1987 .

[1072]  J. Lowenstein,et al.  Creatine phosphate inhibition of heart lactate dehydrogenase and muscle pyruvate kinase is due to a contaminant. , 1979, The Journal of biological chemistry.

[1073]  K. Mitsui,et al.  Metabolism of S-adenosylmethionine in rat hepatocytes: transfer of methyl group from S-adenosylmethionine by methyltransferase reactions. , 1985, Life sciences.