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Taurine Information
By David Tolson

Introduction

Taurine is a conditionally essential amino acid that is the most abundant free amino acid in many tissues. Taurine is different than most other amino acids because it is not incorporated into proteins, but it does play many roles in the body, including bile acid conjugation, detoxification, membrane stabilization, osmoregulation, and modulation of excitatory neurotransmission and intracellular calcium levels. The mean taurine intake in humans is estimated to be around 60 mg daily, but supplementation can far exceed this amount and readily increases taurine levels in many tissues. This article will briefly cover some of the many possible utilities of taurine supplementation.

Exercise

Exercise causes a significant reduction of taurine levels in skeletal muscle, as does aging [1-3]. In these conditions, supplemental taurine improves exercise performance and electrical and contractile properties of skeletal muscle in rodents, respectively [1, 3]. In healthy rats, taurine increased running time to exhaustion from 73.8 minutes to 98.8 minutes. Additionally, the weights of the gastrocnemius and soleus muscles were increased, but the difference was not statistically significant [1]. A beverage containing taurine, caffeine, and simple carbs increases endurance performance in humans, and a significant portion of these effects is due to the taurine alone [1, 4]. However, it has not been established if it was due to a synergistic relationship, as taurine-only studies have not yet been conducted in humans. Taurine also counteracts exercise-induced weakness in a mouse model of dystrophy, and is superior to creatine in this regard [5], and it protects muscle tissue from ischemia-reperfusion injury [6]. Among the postulated mechanisms of action are membrane stabilization and modulation of ion channels or calcium ion storage capacity [1, 3-4], although there could be a wide variety of reasons for this effect (such as osmoregulation).

The role of Taurine in heart health

The concentrations of taurine in the heart are very high, and it constitutes over 50% of the total free amino acid pool [7]. Among the multiple roles it plays are protecting from excessive or inadequate intracellular calcium, acting as a membrane stabilizer, and protecting from injury and oxidative stress [7-8].

Neuroprotection

The brain is another area where taurine is particularly important. Taurine plays an essential role in both brain development and regeneration and promotes the survival and proliferation of neurons [19]. Taurine is a potent neuroprotectant [21-25]. Among other things, this neuroprotection is due to regulation of calcium homeostasis and apoptosis, direct scavenging of toxins, and a reduction of oxidative stress [23-26].

Heavy metals & toxins

Taurine protects many of the body's organs against toxicity and oxidative stress due to various substances.

Skin health

In vitro, taurine supports recovery from burn injured skin [51-52]. As an osmolyte, taurine helps maintain hydration in the epidermis when it is exposed to a dry environment [53], but the effect of oral taurine supplementation on skin hydration and healing has not been determined.

Dosage & toxicity

Toxicity is not a concern with taurine, as no signs of toxicity have been indicated in animal studies [58]. For general health and increased exercise performance, 1-4 g daily is commonly used (with at least 1 g prior to exercise), while most clinical trials have utilized dosages in the range of 3-6 g daily.

If you have any questions or comments regarding this article, please email dvdtlsn@bulknutrition.com.


No part of this article may be reproduced in any form without the permission of David Tolson or Mike McCandless.


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References
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2. Med Sci Sports Exerc. 2002 May;34(5):793-7. Decreased taurine concentration in skeletal muscles after exercise for various durations. Matsuzaki Y, Miyazaki T, Miyakawa S, Bouscarel B, Ikegami T, Tanaka N.


3. J Pharmacol Exp Ther. 1998 Sep;286(3):1183-90. Chronic administration of taurine to aged rats improves the electrical and contractile properties of skeletal muscle fibers. Pierno S, De Luca A, Camerino C, Huxtable RJ, Camerino DC.

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13. Amino Acids. 2002;23(4):433-9. Dietary taurine enhances cholesterol degradation and reduces serum and liver cholesterol concentrations in rats fed a high-cholesterol diet. Yokogoshi H, Oda H.

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16. Circulation. 2001 Sep 4;104(10):1165-70. Taurine prevents the decrease in expression and secretion of extracellular superoxide dismutase induced by homocysteine: amelioration of homocysteine-induced endoplasmic reticulum stress by taurine. Nonaka H, Tsujino T, Watari Y, Emoto N, Yokoyama M.

17. Circulation. 2003 Jan 28;107(3):410-5. Taurine and vitamin C modify monocyte and endothelial dysfunction in young smokers. Fennessy FM, Moneley DS, Wang JH, Kelly CJ, Bouchier-Hayes DJ.

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24. Acupunct Electrother Res. 2002;27(2):129-36. Effect of taurine in combination with electroacupuncture on neuronal damage following transient focal cerebral ischemia in rats. Guo J, Li R, Zhao P, Cheng J.

25. Brain Res. 2003 Jul 11;977(2):290-3. Changes in the striatal extracellular levels of dopamine and dihydroxyphenylacetic acid evoked by ammonia and N-methyl-D-aspartate: modulation by taurine. Anderzhanova E, Oja SS, Saransaari P, Albrecht J.

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30. Environ Res. 2000 Jan;82(1):7-17. Effects of taurine on ozone-induced memory deficits and lipid peroxidation levels in brains of young, mature, and old rats. Rivas-Arancibia S, Dorado-Martinez C, Borgonio-Perez G, Hiriart-Urdanivia M, Verdugo-Diaz L, Duran-Vazquez A, Colin-Baranque L, Avila-Costa MR.

31. Am J Physiol Endocrinol Metab. 2003 Oct;285(4):E744-53. Epub 2003 Jun 10. N-acetylcysteine and taurine prevent hyperglycemia-induced insulin resistance in vivo: possible role of oxidative stress. Haber CA, Lam TK, Yu Z, Gupta N, Goh T, Bogdanovic E, Giacca A, Fantus IG.

32. Amino Acids. 2002;22(1):27-38. Taurine modulates kallikrein activity and glucose metabolism in insulin resistant rats. Nandhini AT, Anuradha CV.

33. J Pharmacol Exp Ther. 2000 Apr;293(1):82-90. Taurine and niacin block lung injury and fibrosis by down-regulating bleomycin-induced activation of transcription nuclear factor-kappaB in mice. Gurujeyalakshmi G, Wang Y, Giri SN.

34. Exp Lung Res. 1998 Sep-Oct;24(5):659-74. Taurine protects rat bronchioles from acute ozone exposure: a freeze fracture and electron microscopic study. Gordon RE, Park E, Laskin D, Schuller-Levis GB.

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36. Metab Brain Dis. 2002 Sep;17(3):183-97. Treatment with taurine, diltiazem, and vitamin E retards the progressive visual field reduction in retinitis pigmentosa: a 3-year follow-up study. Pasantes-Morales H, Quiroz H, Quesada O.

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38. Free Radic Res. 2003 Mar;37(3):323-30. Potential therapeutic effect of antioxidants in experimental diabetic retina: a comparison between chronic taurine and vitamin E plus selenium supplementations. Di Leo MA, Ghirlanda G, Gentiloni Silveri N, Giardina B, Franconi F, Santini SA.

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42. Biol Pharm Bull. 2002 Sep;25(9):1231-3. Taurine treatment reduces hepatic lipids and oxidative stress in chronically ethanol-treated rats. Balkan J, Kanbagli O, Aykac-Toker G, Uysal M.

43. Am J Physiol Gastrointest Liver Physiol. 2001 Jun;280(6):G1274-9. Role of taurine in preventing acetaminophen-induced hepatic injury in the rat. Waters E, Wang JH, Redmond HP, Wu QD, Kay E, Bouchier-Hayes D.

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45. Chemotherapy. 2002 Mar;48(1):42-8. Protection effects of Taurine supplementation against cisplatin-induced nephrotoxicity in rats. Saad SY, Al-Rikabi AC.

46. Endoscopy. 2000 Apr;32(4):294-9. Gastric mucosal damage caused by monochloramine in the rat and protective effect of taurine: endoscopic observation through gastric fistula. Kodama M, Tsukada H, Ooya M, Onomura M, Saito T, Fukuda K, Nakamura H, Taniguchi T, Tominaga M, Hosokawa M, Fujita J, Seino Y.

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48. Food Chem Toxicol. 1998 Mar;36(3):239-44. Effect of taurine on toxicity of copper in rats. Hwang DF, Wang LC, Cheng HM.

49. Arch Environ Contam Toxicol. 2001 Nov;41(4):397-402. Antioxidant effect of taurine against lead-induced oxidative stress. Gurer H, Ozgunes H, Saygin E, Ercal N.

50. Food Chem Toxicol. 2000 Jul;38(7):585-91. Effect of taurine on toxicity of oxidized fish oil in rats. Hwang DF, Hour JL, Cheng HM.

51. Amino Acids. 2002;22(2):187-98. An investigation on skin wound healing in mice with a taurine-chitosan gel formulation. Degim Z, Celebi N, Sayan H, Babul A, Erdogan D, Take G.

52. Amino Acids. 2002;23(4):441-5. Effects of taurine on polymorphonuclear phagocytosis activity in burned patients. Farriol M, Venereo Y, Rossello J, Gomez P, Palao R, Orta X, Segovia-Silvestre T.

53. J Invest Dermatol. 2003 Aug;121(2):354-61. Role of taurine accumulation in keratinocyte hydration. Janeke G, Siefken W, Carstensen S, Springmann G, Bleck O, Steinhart H, Hoger P, Wittern KP, Wenck H, Stab F, Sauermann G, Schreiner V, Doering T.

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56. Adv Exp Med Biol. 2003;526:277-83. Dietary taurine intake and serum taurine levels of women on Jeju Island. Kim ES, Kim JS, Yim MH, Jeong Y, Ko YS, Watanabe T, Nakatsuka H, Nakatsuka S, Matsuda-Inoguchi N, Shimbo S, Ikeda M.

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59. Am J Hypertens. 2003 Aug;16(8):673-80. Effects of taurine and enalapril on kidney function of the hypertensive glucose-intolerant rat. Mozaffari MS, Miyata N, Schaffer SW.

60. J Am Soc Nephrol. 2003 Aug;14(8 Suppl 3):S250-3. Effects of antioxidants in diabetes-induced oxidative stress in the glomeruli of diabetic rats. Koya D, Hayashi K, Kitada M, Kashiwagi A, Kikkawa R, Haneda M.






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