Creatine and creatinine metabolism.
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[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.