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骨骼肌疲劳:细胞机制

Skeletal muscle fatigue: cellular mechanisms.

作者信息

Allen D G, Lamb G D, Westerblad H

机构信息

School of Medical Sciences and Bosch Institute, University of Sydney, Sydney, New South Wales, Australia.

出版信息

Physiol Rev. 2008 Jan;88(1):287-332. doi: 10.1152/physrev.00015.2007.

Abstract

Repeated, intense use of muscles leads to a decline in performance known as muscle fatigue. Many muscle properties change during fatigue including the action potential, extracellular and intracellular ions, and many intracellular metabolites. A range of mechanisms have been identified that contribute to the decline of performance. The traditional explanation, accumulation of intracellular lactate and hydrogen ions causing impaired function of the contractile proteins, is probably of limited importance in mammals. Alternative explanations that will be considered are the effects of ionic changes on the action potential, failure of SR Ca2+ release by various mechanisms, and the effects of reactive oxygen species. Many different activities lead to fatigue, and an important challenge is to identify the various mechanisms that contribute under different circumstances. Most of the mechanistic studies of fatigue are on isolated animal tissues, and another major challenge is to use the knowledge generated in these studies to identify the mechanisms of fatigue in intact animals and particularly in human diseases.

摘要

肌肉的反复高强度使用会导致表现下降,即肌肉疲劳。在疲劳过程中,许多肌肉特性会发生变化,包括动作电位、细胞外和细胞内离子以及许多细胞内代谢物。已经确定了一系列导致表现下降的机制。传统的解释是细胞内乳酸和氢离子的积累导致收缩蛋白功能受损,这在哺乳动物中可能重要性有限。将考虑的其他解释包括离子变化对动作电位的影响、通过各种机制导致的肌浆网钙离子释放失败以及活性氧的影响。许多不同的活动都会导致疲劳,一个重要的挑战是确定在不同情况下起作用的各种机制。大多数关于疲劳的机制研究都是针对分离的动物组织,另一个主要挑战是利用这些研究中产生的知识来确定完整动物尤其是人类疾病中疲劳的机制。

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