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肌肉疲劳:细胞内钙储备的作用。

Muscle fatigue: the role of intracellular calcium stores.

作者信息

Allen David G, Kabbara Akram A, Westerblad H kau

机构信息

Department of Physiology, University of Sydney F13, NSW 2006, Australia.

出版信息

Can J Appl Physiol. 2002 Feb;27(1):83-96. doi: 10.1139/h02-006.

Abstract

Force declines when muscles are used repeatedly and intensively and a variety of intracellular mechanisms appear to contribute to this muscle fatigue. Intracellular calcium release declines during fatigue and has been shown to contribute to the reduction in force. Three new approaches have helped to define the role of calcium stores to this decline in calcium release. Skinned fibre experiments show that when intracellular phosphate is increased the amount of Ca2+ released from the sarcoplasmic reticulum (SR) declines. Intact fibre experiments show that the size of the calcium store declines during fatigue and recovers on rest. Intact muscles which lack the enzyme creatine kinase, do not exhibit the usual rise of phosphate during fatigue and, under these conditions, the decline of Ca2+ release is absent or delayed. These results can be explained by the "calcium phosphate precipitation" hypothesis. This proposes that if phosphate in the myoplasm rises, it enters the SR and binds to Ca2+ as Ca2+ phosphate. The resultant reduction in free Ca2+ within the SR contributes to the reduced Ca2+ release during fatigue.

摘要

当肌肉反复高强度使用时力量会下降,多种细胞内机制似乎都与这种肌肉疲劳有关。疲劳过程中细胞内钙释放减少,并且已证明这会导致力量下降。三种新方法有助于确定钙储备在钙释放减少过程中的作用。皮肤纤维实验表明,当细胞内磷酸盐增加时,从肌浆网(SR)释放的Ca2+量会下降。完整纤维实验表明,钙储备的大小在疲劳过程中会减小,并在休息时恢复。缺乏肌酸激酶的完整肌肉在疲劳过程中不会出现磷酸盐的通常升高,在这些条件下,Ca2+释放的下降不存在或延迟。这些结果可以用“磷酸钙沉淀”假说来解释。该假说提出,如果肌浆中的磷酸盐升高,它会进入肌浆网并与Ca2+结合形成磷酸钙。肌浆网内游离Ca2+的减少导致疲劳过程中Ca2+释放减少。

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