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左旋精氨酸-苹果酸盐对运动中支链氨基酸利用的影响。

L-citrulline-malate influence over branched chain amino acid utilization during exercise.

机构信息

Departament de Biologia Fonamental i Ciències de la Salut, University of Balearic Islands, Palma de Mallorca, Illes Balears, Spain.

出版信息

Eur J Appl Physiol. 2010 Sep;110(2):341-51. doi: 10.1007/s00421-010-1509-4. Epub 2010 May 25.

Abstract

Exhaustive exercise induces disturbances in metabolic homeostasis which can result in amino acid catabolism and limited L-arginine availability. Oral L-citrulline supplementation raises plasma L-arginine concentration and augments NO-dependent signalling. Our aim was to evaluate the effects of diet supplementation with L-citrulline-malate prior to intense exercise on the metabolic handle of plasma amino acids and on the products of metabolism of arginine as creatinine, urea and nitrite and the possible effects on the hormonal levels. Seventeen voluntary male pre-professional cyclists were randomly assigned to one of two groups: control or supplemented (6 g L-citrulline-malate 2 h prior exercise) and participated in a 137-km cycling stage. Blood samples were taken in basal conditions, 15 min after the race and 3 h post race (recovery). Most essential amino acids significantly decreased their plasma concentration as a result of exercise; however, most non-essential amino acids tended to significantly increase their concentration. Citrulline-malate ingestion significantly increased the plasma concentration of citrulline, arginine, ornithine, urea, creatinine and nitrite (p < 0.05) and significantly decreased the isoleucine concentration from basal measures to after exercise (p < 0.05). Insulin levels significantly increased after exercise in both groups (p < 0.05) returning to basal values at recovery. Growth hormone increased after exercise in both groups, although the increase was higher in the citrulline-malate supplemented group (p < 0.05). L-citrulline-malate supplementation can enhance the use of amino acids, especially the branched chain amino acids during exercise and also enhance the production of arginine-derived metabolites such as nitrite, creatinine, ornithine and urea.

摘要

剧烈运动导致代谢稳态紊乱,从而导致氨基酸分解和有限的 L-精氨酸供应。口服 L-瓜氨酸补充剂可提高血浆 L-精氨酸浓度并增强 NO 依赖性信号转导。我们的目的是评估在剧烈运动前用 L-瓜氨酸 - 苹果酸补充饮食对血浆氨基酸代谢处理的影响,以及对精氨酸代谢产物如肌酐、尿素和亚硝酸盐的影响,以及对激素水平的可能影响。17 名志愿的男性职业自行车手被随机分配到对照组或补充组(运动前 2 小时服用 6g L-瓜氨酸 - 苹果酸),并参加了 137 公里的自行车赛段。在基础条件、比赛后 15 分钟和比赛后 3 小时(恢复)采集血液样本。大多数必需氨基酸的血浆浓度因运动而显著降低;然而,大多数非必需氨基酸的浓度往往显著增加。瓜氨酸 - 苹果酸摄入显著增加了瓜氨酸、精氨酸、鸟氨酸、尿素、肌酐和亚硝酸盐的血浆浓度(p < 0.05),并显著降低了运动后基础测量的异亮氨酸浓度(p < 0.05)。两组运动后胰岛素水平均显著升高(p < 0.05),在恢复时恢复到基础值。两组运动后生长激素均增加,尽管补充瓜氨酸 - 苹果酸组的增加更高(p < 0.05)。L-瓜氨酸 - 苹果酸补充剂可以增强运动期间氨基酸的利用,特别是支链氨基酸的利用,同时也可以增强精氨酸衍生代谢物如亚硝酸盐、肌酐、鸟氨酸和尿素的产生。

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