首页> 外文期刊>The British Journal of Nutrition >Acute supplementation with keto analogues and amino acids in rats during resistance exercise.
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Acute supplementation with keto analogues and amino acids in rats during resistance exercise.

机译:抵抗运动中大鼠的酮类似物和氨基酸的急性补充。

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摘要

During exercise, ammonia levels are related to the appearance of both central and peripheral fatigue. Therefore, controlling the increase in ammonia levels is an important strategy in ameliorating the metabolic response to exercise and in improving athletic performance. Free amino acids can be used as substrates for ATP synthesis that produces ammonia as a side product. Keto analogues act in an opposite way, being used to synthesise amino acids whilst decreasing free ammonia in the blood. Adult male rats were divided into four groups based on receiving either keto analogues associated with amino acids (KAAA) or a placebo and resistance exercise or no exercise. There was an approximately 40% increase in ammonaemia due to KAAA supplementation in resting animals. Exercise increased ammonia levels twofold with respect to the control, with a smaller increase (about 20%) in ammonia levels due to exercise. Exercise itself causes a significant increase in blood urea levels (17%). However, KAAA reduced blood urea levels to 75% of the pre-exercise values. Blood urate levels increased 28% in the KAAA group, independent of exercise. Supplementation increased glucose levels by 10% compared with control animals. Exercise did not change glucose levels in either the control or supplemented groups. Exercise promoted a 57% increase in lactate levels in the control group. Supplementation promoted a twofold exercise-induced increase in blood lactate levels. The present results suggest that an acute supplementation of KAAA can decrease hyperammonaemia induced by exercise.
机译:在运动过程中,氨水平与中枢和外周疲劳的出现有关。因此,控制氨水平的增加是改善对运动的代谢反应和改善运动表现的重要策略。游离氨基酸可用作ATP合成的底物,后者可产生氨作为副产物。酮类似物以相反的方式起作用,用于合成氨基酸,同时减少血液中的游离氨。成年雄性大鼠根据接受与氨基酸相关的酮类似物(KAAA)或安慰剂并进行抗性锻炼或不运动而分为四组。在休息的动物中,由于补充了KAAA,导致氨血症增加约40%。运动后的氨水平相对于对照增加了两倍,运动后的氨水平增加幅度较小(约20%)。运动本身会导致血尿素水平显着增加(17%)。但是,KAAA将血液尿素水平降低到运动前值的75%。与运动无关,KAAA组的血尿酸盐水平增加了28%。与对照动物相比,补充使葡萄糖水平增加了10%。在对照组或补充组中,运动均未改变葡萄糖水平。运动使对照组的乳酸水平增加了57%。补充促进运动引起的血液乳酸水平的两倍增加。目前的结果表明,急性补充KAAA可以减少运动引起的高氨血症。

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