Supinski G
MetroHealth Medical Center, Department of Medicine, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Mol Cell Biochem. 1998 Feb;179(1-2):99-110. doi: 10.1023/a:1006859920875.
It is now recognized that respiratory muscle fatigue contributes to the development of respiratory failure in some patients with lung disease. This observation has prompted an examination into the mechanisms of development of muscle fatigue, with the understanding that an elucidation of these processes may lead to new therapeutic approaches to the treatment of these patients. A series of recent studies examining this issue have, moreover, discovered that oxygen-derived free radicals generated during strenuous contraction may modulate respiratory muscle contractile function and contribute to the development of muscle fatigue. The data supporting this concept include: (a) direct (e.g. EPR, ESR studies) and indirect (evidence of lipid peroxidation, protein carbonyl formation, glutathione oxidation) evidence that there is heightened free radical production in contracting muscle, (b) evidence that pharmacologic depletion of muscle antioxidant stores increases degree of muscle fatigue present after a period of exercise, and (c) evidence that administration of agents that act as free radical scavengers retard the development muscle fatigue. Free radicals may produce these changes in muscle force generating capacity by interacting with and altering the function of a number of intracellular-biophysical processes (i.e. sarcolemmal action potential propagation, sarcoplasmic reticulum calcium handling, mitochondrial function, contractile protein interactions).
现在已经认识到,呼吸肌疲劳在一些肺部疾病患者呼吸衰竭的发生发展中起作用。这一观察结果促使人们对肌肉疲劳的发生机制进行研究,因为人们认识到阐明这些过程可能会带来治疗这些患者的新方法。此外,最近一系列研究这个问题的研究发现,剧烈收缩过程中产生的氧衍生自由基可能调节呼吸肌的收缩功能,并导致肌肉疲劳的发生。支持这一概念的数据包括:(a)直接(如电子顺磁共振、电子自旋共振研究)和间接(脂质过氧化、蛋白质羰基形成、谷胱甘肽氧化的证据)证据表明收缩肌肉中自由基产生增加,(b)证据表明肌肉抗氧化储备的药理学耗竭会增加运动一段时间后出现的肌肉疲劳程度,以及(c)证据表明给予作为自由基清除剂的药物会延缓肌肉疲劳的发生。自由基可能通过与许多细胞内生物物理过程(即肌膜动作电位传播、肌浆网钙处理、线粒体功能、收缩蛋白相互作用)相互作用并改变其功能,从而在肌肉力量产生能力上产生这些变化。