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骨骼肌中的氧化应激会导致运动活动严重紊乱,而不会引起肌肉萎缩。

Oxidative stress in skeletal muscle causes severe disturbance of exercise activity without muscle atrophy.

机构信息

Molecular Gerontology, Tokyo Metropolitan Institute of Gerontology, Itabashi-ku, Tokyo 173-0015, Japan.

出版信息

Free Radic Biol Med. 2010 May 1;48(9):1252-62. doi: 10.1016/j.freeradbiomed.2010.02.011. Epub 2010 Feb 13.

Abstract

The increase in reactive oxygen species (ROS) levels that occurs during intense exercise has been proposed to be one of the major causes of muscle fatigue. In addition, the accumulation of cellular damage due to ROS is widely regarded to be one of the factors triggering age-related pathological conditions in skeletal muscle. To investigate the pathological significance of oxidative stress in skeletal muscle, we generated skeletal muscle-specific manganese superoxide dismutase-deficient (muscle-Sod2(-/-)) mice. The mutant mice showed severe disturbances in exercise activity, but no atrophic changes in their skeletal muscles. In histological and histochemical analyses, the mutant mice showed centralized nuclei in their muscle fibers and selective loss of enzymatic activity in mitochondrial respiratory chain complexes. In addition, the mutant mice displayed increased oxidative damage and reduced ATP content in their muscle tissue. Furthermore, a single administration of the antioxidant EUK-8 significantly improved exercise activity and increased the cellular ATP level in skeletal muscle. These results imply that the superoxide anions generated in mitochondria play a pivotal role in the progression of exercise intolerance.

摘要

剧烈运动时活性氧(ROS)水平的增加被认为是肌肉疲劳的主要原因之一。此外,由于 ROS 积累而导致的细胞损伤被广泛认为是触发骨骼肌与年龄相关的病理状况的因素之一。为了研究氧化应激在骨骼肌中的病理意义,我们生成了骨骼肌特异性锰超氧化物歧化酶缺陷(muscle-Sod2(-/-))小鼠。突变小鼠表现出严重的运动活动障碍,但骨骼肌没有萎缩变化。在组织学和组织化学分析中,突变小鼠的肌肉纤维显示出中央核,并且线粒体呼吸链复合物的酶活性选择性丧失。此外,突变小鼠的肌肉组织显示出氧化损伤增加和 ATP 含量减少。此外,单次给予抗氧化剂 EUK-8 可显著改善运动活动并增加骨骼肌中的细胞 ATP 水平。这些结果表明,线粒体中产生的超氧阴离子在运动不耐受的进展中起关键作用。

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