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高强度运动对肌肉和血浆中α-酮异己酸水平的影响。

The effects of high intensity exercise on muscle and plasma levels of alpha-ketoisocaproic acid.

作者信息

Fielding R A, Evans W J, Hughes V A, Moldawer L L, Bistrian B R

出版信息

Eur J Appl Physiol Occup Physiol. 1986;55(5):482-5. doi: 10.1007/BF00421641.

Abstract

Alpha-ketoisocaproic acid (KIC) is the product of the transamination of the indispensable amino acid leucine, which is the first step in the complete degradation of leucine. To determine the effects of intense exercise on muscle and blood levels of KIC, 7 male volunteers performed cycle exercise to exhaustion. After pedaling at an intensity of 90 W for 3 min, the load was increased by 60 W every 3 min until volitional fatigue. Muscle biopsies were obtained prior to and immediately after exercise and rapidly frozen for later determination of KIC. During exercise, blood lactate levels increased as expected, while plasma KIC levels did not change. Following exercise, plasma KIC levels rose significantly with peak values occurring 15 min after exercise and did not return to pre-exercise values until 60 min after exercise. In contrast, muscle KIC levels increased during exercise from a pre-exercise mean of 49.4 +/- 4.1 mumol X kg-1 wet wt to 78.1 +/- 6.5 mumol X kg-1 after exercise, an average increase of 48% (P less than 0.05). These data indicate that during intense exercise, leucine transamination in muscle may continue at a faster rate than the decarboxylation of KIC. In addition, plasma levels of KIC did not reflect the intracellular accumulation of KIC during exercise, suggesting a delay in the diffusion of KIC from muscle.

摘要

α-酮异己酸(KIC)是必需氨基酸亮氨酸转氨作用的产物,这是亮氨酸完全降解的第一步。为了确定剧烈运动对肌肉和血液中KIC水平的影响,7名男性志愿者进行了自行车运动直至力竭。在以90W的强度蹬踏3分钟后,负荷每3分钟增加60W,直至出现自愿性疲劳。在运动前和运动后立即获取肌肉活检样本,并迅速冷冻以便后续测定KIC。运动期间,血乳酸水平如预期般升高,而血浆KIC水平未发生变化。运动后,血浆KIC水平显著升高,峰值出现在运动后15分钟,直到运动后60分钟才恢复到运动前水平。相比之下,运动期间肌肉KIC水平从运动前的平均49.4±4.1μmol·kg-1湿重增加到运动后的78.1±6.5μmol·kg-1,平均增加48%(P<0.05)。这些数据表明,在剧烈运动期间,肌肉中的亮氨酸转氨作用可能比KIC的脱羧作用进行得更快。此外,运动期间血浆KIC水平并未反映出KIC在细胞内的积累情况,这表明KIC从肌肉扩散存在延迟。

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