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骨骼肌对长期高强度耐力训练的适应性变化。

Adaptations of skeletal muscle to prolonged, intense endurance training.

作者信息

Hawley John A

机构信息

Exercise Metabolism Group, School of Medical Sciences, Faculty of Life Sciences, RMIT University, Melbourne, Victoria, Australia.

出版信息

Clin Exp Pharmacol Physiol. 2002 Mar;29(3):218-22. doi: 10.1046/j.1440-1681.2002.03623.x.

Abstract
  1. Endurance exercise induces a variety of metabolic and morphological responses/adaptations in skeletal muscle that function to minimize cellular disturbances during subsequent training sessions. 2. Chronic adaptations in skeletal muscle are likely to be the result of the cumulative effect of repeated bouts of exercise, with the initial signalling responses leading to such adaptations occurring after each training session. 3. Recently, activation of the mitogen-activated protein kinase signalling cascade has been proposed as a possible mechanism involved in the regulation of many of the exercise-induced adaptations in skeletal muscle. 4. The protein targets of AMP-activated protein kinase also appear to be involved in both the regulation of acute metabolic responses and chronic adaptations to exercise. 5. Endurance training is associated with an increase in the activities of key enzymes of the mitochondrial electron transport chain and a concomitant increase in mitochondrial protein concentration. These morphological changes, along with increased capillary supply, result in a shift in trained muscle to a greater reliance on fat as a fuel with a concomitant reduction in glycolytic flux and tighter control of acid-base status. Taken collectively, these adaptations result in an enhanced performance capacity.
摘要
  1. 耐力运动可诱导骨骼肌产生多种代谢和形态学反应/适应性变化,这些变化的作用是在后续训练过程中将细胞干扰降至最低。2. 骨骼肌的慢性适应性变化可能是反复运动发作累积效应的结果,每次训练后都会出现导致这种适应性变化的初始信号反应。3. 最近,有研究提出丝裂原活化蛋白激酶信号级联的激活可能是参与调节骨骼肌中许多运动诱导适应性变化的一种机制。4. AMP活化蛋白激酶的蛋白质靶点似乎也参与了急性代谢反应的调节以及对运动的慢性适应性变化。5. 耐力训练与线粒体电子传递链关键酶活性的增加以及线粒体蛋白浓度的相应增加有关。这些形态学变化,连同毛细血管供应的增加,导致训练有素的肌肉对脂肪作为燃料的依赖性增加,同时糖酵解通量降低,酸碱状态得到更严格的控制。总体而言,这些适应性变化导致运动能力增强。

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