Carnosine: from exercise performance to health
暂无分享,去创建一个
B. Gualano | G. Artioli | C. Sale | R. Harris | B. Saunders | R. Hobson
[1] C. Sale,et al. Reliability of a high-intensity cycling capacity test. , 2013, Journal of science and medicine in sport.
[2] G. Wright,et al. Effects of beta-alanine supplementation on sprint endurance. , 2013, Journal of strength and conditioning research.
[3] Jeffrey R Stout,et al. High-Velocity Intermittent Running: Effects of Beta-alanine Supplementation , 2012, Journal of strength and conditioning research.
[4] Megan E. Anderson,et al. Effect of 10 Week Beta-Alanine Supplementation on Competition and Training Performance in Elite Swimmers , 2012, Nutrients.
[5] C. Sale,et al. β-alanine supplementation improves YoYo intermittent recovery test performance , 2012, Journal of the International Society of Sports Nutrition.
[6] T. Stellingwerff,et al. Effect of slow-release β-alanine tablets on absorption kinetics and paresthesia , 2012, Amino Acids.
[7] Jeffrey R Stout,et al. Exercise-induced oxidative stress: the effects of β-alanine supplementation in women , 2012, Amino Acids.
[8] H. Roschel,et al. Reduced muscle carnosine content in type 2, but not in type 1 diabetic patients , 2012, Amino Acids.
[9] E. Rizzarelli,et al. Carnosine derivatives: new multifunctional drug-like molecules , 2012, Amino Acids.
[10] G. Aldini,et al. Low plasma carnosinase activity promotes carnosinemia after carnosine ingestion in humans. , 2012, American journal of physiology. Renal physiology.
[11] C. Sale,et al. β-alanine supplementation improves isometric endurance of the knee extensor muscles , 2012, Journal of the International Society of Sports Nutrition.
[12] M. Ohsawa,et al. Carnosine has antinociceptive properties in the inflammation-induced nociceptive response in mice. , 2012, European journal of pharmacology.
[13] W. Derave,et al. Carnosine in exercise and disease: introduction to the International Congress held at Ghent University, Belgium, July 2011 , 2012, Amino Acids.
[14] F. Gaunitz,et al. Carnosine and cancer: a perspective , 2012, Amino Acids.
[15] S. Catrina,et al. Carnosine enhances diabetic wound healing in the db/db mouse model of type 2 diabetes , 2012, Amino Acids.
[16] C. Sale,et al. Effect of beta-alanine supplementation on repeated sprint performance during the Loughborough Intermittent Shuttle Test , 2012, Amino Acids.
[17] M. McKenna,et al. Effects of carnosine on contractile apparatus Ca²⁺ sensitivity and sarcoplasmic reticulum Ca²⁺ release in human skeletal muscle fibers. , 2012, Journal of applied physiology.
[18] C. Boesch,et al. Optimizing human in vivo dosing and delivery of β-alanine supplements for muscle carnosine synthesis , 2012, Amino Acids.
[19] C. Sale,et al. Determinants of muscle carnosine content , 2012, Amino Acids.
[20] G. Ball,et al. Effects of β-alanine supplementation on exercise performance: a meta-analysis , 2012, Amino Acids.
[21] E. Achten,et al. Effects of sprint training combined with vegetarian or mixed diet on muscle carnosine content and buffering capacity , 2011, European Journal of Applied Physiology.
[22] C. Sale,et al. Effect of β-alanine plus sodium bicarbonate on high-intensity cycling capacity. , 2011, Medicine and science in sports and exercise.
[23] Louise M. Burke,et al. Nutrition for power sports: Middle-distance running, track cycling, rowing, canoeing/kayaking, and swimming , 2011, Journal of sports sciences.
[24] K. Overgaard,et al. Effects of acidification and increased extracellular potassium on dynamic muscle contractions in isolated rat muscles , 2010, The Journal of physiology.
[25] K. Tiedje,et al. β-Alanine as a small molecule neurotransmitter , 2010, Neurochemistry International.
[26] Eric Achten,et al. Important role of muscle carnosine in rowing performance. , 2010, Journal of applied physiology.
[27] E. Achten,et al. Vegetarianism, female gender and increasing age, but not CNDP1 genotype, are associated with reduced muscle carnosine levels in humans , 2010, Amino Acids.
[28] Giulio Vistoli,et al. The carbonyl scavenger carnosine ameliorates dyslipidaemia and renal function in Zucker obese rats , 2010, Journal of cellular and molecular medicine.
[29] J. Lukaszuk,et al. Effect of beta-alanine supplementation on the onset of blood lactate accumulation (OBLA) during treadmill running: Pre/post 2 treatment experimental design , 2010, Journal of the International Society of Sports Nutrition.
[30] Jeffrey R Stout,et al. Six Weeks of High-Intensity Interval Training With and Without β-Alanine Supplementation for Improving Cardiovascular Fitness in Women , 2010, Journal of strength and conditioning research.
[31] C. Sale,et al. Effect Of B-Alanine Supplementation, With And Without Sodium Bicarbonate, On High-Intensity Cycling Capacity.: 930 , 2010 .
[32] E. Franchini,et al. The Effects Of Rapid Weight Loss Upon High-intensity Performance In Judo Competitors: 642 , 2010 .
[33] J. Meixensberger,et al. Carnosine inhibits ATP production in cells from malignant glioma , 2010, Neurological Research.
[34] D. Vertommen,et al. Molecular Identification of Carnosine Synthase as ATP-grasp Domain-containing Protein 1 (ATPGD1)* , 2010, The Journal of Biological Chemistry.
[35] J. Meixensberger,et al. Carnosine retards tumor growth in vivo in an NIH3T3-HER2/neu mouse model , 2010, Molecular Cancer.
[36] G. Wright,et al. The Effect of β-Alanine Supplementation on Power Performance During Repeated Sprint Activity , 2010, Journal of strength and conditioning research.
[37] Bruno Gualano,et al. Role of beta-alanine supplementation on muscle carnosine and exercise performance. , 2009, Medicine and science in sports and exercise.
[38] J. Harding,et al. Effect of a combination of carnosine and aspirin eye drops on streptozotocin - induced diabetic cataract in rats , 2009, Molecular vision.
[39] Benjamin Kern,et al. Effects of beta-alanine supplementation on performance and body composition in collegiate wrestlers and football players , 2009, Journal of the International Society of Sports Nutrition.
[40] A. Boldyrev,et al. Neuropeptide carnosine increases stability of lipoproteins and red blood cells as well as efficiency of immune competent system in patients with chronic discirculatory encephalopathy , 2009, Biochemistry (Moscow) Supplement Series A: Membrane and Cell Biology.
[41] P. Hespel,et al. Beta-alanine improves sprint performance in endurance cycling. , 2009, Medicine and science in sports and exercise.
[42] E. Achten,et al. Carnosine loading and washout in human skeletal muscles. , 2009, Journal of applied physiology.
[43] Hyo Jeong Kim,et al. The effect of 4 weeks β-alanine supplementation and isokinetic training on carnosine concentrations in type I and II human skeletal muscle fibres , 2009, European Journal of Applied Physiology.
[44] Jeffrey R Stout,et al. Effects of β-alanine supplementation and high-intensity interval training on endurance performance and body composition in men; a double-blind trial , 2009, Journal of the International Society of Sports Nutrition.
[45] Jeffrey R. Stout,et al. The effects of beta-alanine supplementation and high-intensity interval training on neuromuscular fatigue and muscle function , 2009, European Journal of Applied Physiology.
[46] Hyo-jeong Kim. Comparison of the carnosine and taurine contents of vastus lateralis of elderly Korean males, with impaired glucose tolerance, and young elite Korean swimmers , 2009, Amino Acids.
[47] I. Ivanova-Smolenskaya,et al. Carnosine [corrected] increases efficiency of DOPA therapy of Parkinson's disease: a pilot study. , 2008, Rejuvenation research.
[48] A. Faigenbaum,et al. Beta-alanine and the hormonal response to exercise. , 2008, International journal of sports medicine.
[49] J. Meixensberger,et al. Carnosine Inhibits Growth of Cells Isolated from Human Glioblastoma Multiforme , 2008, International Journal of Peptide Research and Therapeutics.
[50] G. Aldini,et al. Profiling histidine dipeptides in plasma and urine after ingesting beef, chicken or chicken broth in humans , 2008, Amino Acids.
[51] Hyo Jeong Kim,et al. The effects of 10 weeks of resistance training combined with β-alanine supplementation on whole body strength, force production, muscular endurance and body composition , 2008, Amino Acids.
[52] E. Achten,et al. beta-Alanine supplementation augments muscle carnosine content and attenuates fatigue during repeated isokinetic contraction bouts in trained sprinters. , 2007, Journal of applied physiology.
[53] H. Steinbeisser,et al. A CTG Polymorphism in the CNDP1 Gene Determines the Secretion of Serum Carnosinase in Cos-7–Transfected Cells , 2007, Diabetes.
[54] Jeffrey R Stout,et al. Effects of 28 days of beta-alanine and creatine monohydrate supplementation on aerobic power, ventilatory and lactate thresholds, and time to exhaustion , 2007, Amino Acids.
[55] M. Tarnopolsky,et al. Carnosine, taurine and enzyme activities of human skeletal muscle fibres from elderly subjects with osteoarthritis and young moderately active subjects , 2007, Biogerontology.
[56] J. A. Wise,et al. Influence of β-alanine supplementation on skeletal muscle carnosine concentrations and high intensity cycling capacity , 2007, Amino Acids.
[57] Jeffrey R Stout,et al. EFFECTS OF TWENTY‐EIGHT DAYS OF BETA‐ALANINE AND CREATINE MONOHYDRATE SUPPLEMENTATION ON THE PHYSICAL WORKING CAPACITY AT NEUROMUSCULAR FATIGUE THRESHOLD , 2006, Journal of strength and conditioning research.
[58] Gerald T. Mangine,et al. Effect of creatine and beta-alanine supplementation on performance and endocrine responses in strength/power athletes. , 2006, International journal of sport nutrition and exercise metabolism.
[59] A. Hipkiss. Would Carnosine or a Carnivorous Diet Help Suppress Aging and Associated Pathologies? , 2006, Annals of the New York Academy of Sciences.
[60] J. L. Fallowfield,et al. The absorption of orally supplied β-alanine and its effect on muscle carnosine synthesis in human vastus lateralis , 2006, Amino Acids.
[61] D. Dobrota,et al. Carnosine Protects the Brain of Rats and Mongolian Gerbils against Ischemic Injury: After-Stroke-Effect , 2005, Neurochemical Research.
[62] H. Hammes,et al. Carnosine as a protective factor in diabetic nephropathy: association with a leucine repeat of the carnosinase gene CNDP1. , 2005, Diabetes.
[63] S. Volpe,et al. Quantitation of carnosine in humans plasma after dietary consumption of beef. , 2005, Journal of agricultural and food chemistry.
[64] P. Krustrup,et al. Potassium kinetics in human muscle interstitium during repeated intense exercise in relation to fatigue , 2004, Pflügers Archiv.
[65] G. Kramarenko,et al. Effect of Carnosine on Drosophila Melanogaster Lifespan , 2002, Bulletin of Experimental Biology and Medicine.
[66] S. Messina,et al. The cytoprotective role of taurine in exercise-induced muscle injury , 2002, Amino Acids.
[67] R. Keep,et al. Role of PEPT2 in peptide/mimetic trafficking at the blood-cerebrospinal fluid barrier: studies in rat choroid plexus epithelial cells in primary culture. , 2002, The Journal of pharmacology and experimental therapeutics.
[68] M. Carrier,et al. Carnosine, the anti-ageing, anti-oxidant dipeptide, may react with protein carbonyl groups , 2001, Mechanisms of Ageing and Development.
[69] M. Reid. Nitric oxide, reactive oxygen species, and skeletal muscle contraction. , 2001, Medicine and science in sports and exercise.
[70] H. Abe. Role of histidine-related compounds as intracellular proton buffering constituents in vertebrate muscle. , 2000, Biochemistry. Biokhimiia.
[71] V. Ganapathy,et al. Electrophysiological characteristics of the proton-coupled peptide transporter PEPT2 cloned from rat brain. , 1998, The American journal of physiology.
[72] G. Bogdanis,et al. Power output and muscle metabolism during and following recovery from 10 and 20 s of maximal sprint exercise in humans. , 1998, Acta physiologica Scandinavica.
[73] A. Hipkiss,et al. Toxic effects of β-amyloid(25–35) on immortalised rat brain endothelial cell: protection by carnosine, homocarnosine and β-alanine , 1998, Neuroscience Letters.
[74] D L Rothman,et al. Homocarnosine and the measurement of neuronal pH in patients with epilepsy , 1997, Magnetic resonance in medicine.
[75] T. Noakes,et al. Skeletal muscle buffering capacity and endurance performance after high-intensity interval training by well-trained cyclists , 1996, European Journal of Applied Physiology and Occupational Physiology.
[76] P. Syrris,et al. Non‐enzymatic glycosylation of the dipeptide l‐carnosine, a potential anti‐protein‐cross‐linking agent , 1995, FEBS letters.
[77] M. Babizhayev,et al. L-carnosine (beta-alanyl-L-histidine) and carcinine (beta-alanylhistamine) act as natural antioxidants with hydroxyl-radical-scavenging and lipid-peroxidase activities. , 1994, The Biochemical journal.
[78] A. Boldyrev. Does carnosine possess direct antioxidant activity? , 1993, The International journal of biochemistry.
[79] Jullie W Pan,et al. Correlation of lactate and pH in human skeletal muscle after exercise by 1H NMR , 1991, Magnetic resonance in medicine.
[80] M L Gardner,et al. Intestinal absorption of the intact peptide carnosine in man, and comparison with intestinal permeability to lactulose. , 1991, The Journal of physiology.
[81] H. Kuipers,et al. Acid-Base Balance during Repeated Bouts of Exercise: Influence of HCO3 , 1984, International journal of sports medicine.
[82] T. Perry,et al. Postmortem Changes of Amino Compounds in Human and Rat Brain , 1981, Journal of neurochemistry.
[83] S. Kish,et al. HOMOCARNOSINOSIS: INCREASED CONTENT OF HOMOCARNOSINE AND DEFICIENCY OF HOMOCARNOSINASE IN BRAIN , 1979, Journal of neurochemistry.
[84] L. Hermansen,et al. Differential, direct effects of H+ on Ca2+-activated force of Skinned fibers from the soleus, cardiac and adductor magnus muscles of rabbits , 1978, Pflügers Archiv.
[85] W. Watson,et al. Carnosinase activity of human gastrointestinal mucosa. , 1975, Gut.
[86] E. Hultman,et al. Glycogen, glycolytic intermediates and high-energy phosphates determined in biopsy samples of musculus quadriceps femoris of man at rest. Methods and variance of values. , 1974, Scandinavian journal of clinical and laboratory investigation.
[87] L. Ekelund,et al. Muscle metabolism during isometric exercise performed at constant force. , 1972, Journal of applied physiology.
[88] A. Lant,et al. Intestinal absorption of carnosine and its constituent amino acids in man 1 , 1970, Gut.
[89] Y. Nishizuka,et al. Enzymatic studies on the metabolism of beta-alanine. , 1961, The Journal of biological chemistry.
[90] E. C. Smith. The buffering of muscle in rigor; protein, phosphate and carnosine , 1938, The Journal of physiology.
[91] W. Gulewitsch,et al. Ueber das Carnosin, eine neue organische Base des Fleischextractes , 1900 .
[92] S. Keller-McNulty,et al. Reliability , 2007, The SAGE Encyclopedia of Research Design.
[93] B. Dawson,et al. Effect of beta-alanine supplementation on 2000-m rowing-ergometer performance. , 2013, International journal of sport nutrition and exercise metabolism.
[94] W. Derave,et al. Effect of Beta-Alanine and Carnosine Supplementation on Muscle Contractility in Mice , 2012 .
[95] Springer-Verlag Wien. Carnosine: from exercise performance to health , 2013 .
[96] C. Shing,et al. Effect of combined β-alanine and sodium bicarbonate supplementation on cycling performance. , 2012, Medicine and science in sports and exercise.
[97] R. Shephard. β-Alanine Improves Sprint Performance in Endurance Cycling , 2010 .
[98] C. Sale,et al. Effect of beta-alanine supplementation on muscle carnosine concentrations and exercise performance , 2010, Amino Acids.
[99] Jeffrey R Stout,et al. Short-duration beta-alanine supplementation increases training volume and reduces subjective feelings of fatigue in college football players. , 2008, Nutrition research.
[100] Jeffrey R Stout,et al. The effect of beta-alanine supplementation on neuromuscularfatigue in elderly (55â•fi92 Years): a double-blind randomized study , 2008 .
[101] D. Allen,et al. Skeletal muscle fatigue: cellular mechanisms. , 2008, Physiological reviews.
[102] Jeffrey R Stout,et al. Effects of β-alanine supplementation on the onset of neuromuscular fatigue and ventilatory threshold in women , 2006, Amino Acids.
[103] A. Hipkiss. Could carnosine suppress zinc-mediated proteasome inhibition and neurodegeneration? Therapeutic potential of a non-toxic but non-patentable dipeptide , 2005, Biogerontology.
[104] I. Petrushanko,et al. Protection of neuronal cells against reactive oxygen species by carnosine and related compounds. , 2004, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[105] P. Jakeman,et al. Effects of isokinetic training of the knee extensors on high-intensity exercise performance and skeletal muscle buffering , 2004, European Journal of Applied Physiology and Occupational Physiology.
[106] G. Lamb,et al. Effect of Carnosine on Excitation–Contraction Coupling in Mechanically-Skinned Rat Skeletal Muscle , 2004, Journal of Muscle Research & Cell Motility.
[107] Osamu,et al. Enzymatic Studies on the Metabolism of @Alanine* , 2003 .
[108] R. Keep,et al. Role of PEPT 2 in Peptide / Mimetic Trafficking at the Blood-Cerebrospinal Fluid Barrier : Studies in Rat Choroid Plexus Epithelial Cells in Primary Culture , 2002 .
[109] G. Kramarenko,et al. Effect of Carnosine on Age-Induced Changes in Senescence-Accelerated Mice , 1999 .
[110] V. Ganapathy,et al. Electrophysiological characteristics of the proton-coupled peptide transporter PEPT2 cloned from rat brain. , 1998, American journal of physiology. Cell physiology.
[111] P. Jakeman,et al. Skeletal muscle buffer value, fibre type distribution and high intensity exercise performance in man , 1995, Experimental physiology.
[112] A. Boldyrev. CARNOSINE : BIOLOGICAL ROLE AND POTENTIAL APPLICATIONS IN MEDICINE , 1992 .
[113] D. Marlin,et al. Muscle buffering capacity and dipeptide content in the thoroughbred horse, greyhound dog and man. , 1990, Comparative biochemistry and physiology. A, Comparative physiology.
[114] T. Suda,et al. [Antineoplastic effects of carnosine and beta-alanine--physiological considerations of its antineoplastic effects]. , 1986, Nihon seirigaku zasshi. Journal of the Physiological Society of Japan.
[115] P. W. Hochachka,et al. Buffering capacity of deproteinized human vastus lateralis muscle. , 1985, Journal of applied physiology.