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首页> 外文期刊>Antioxidants and redox signalling >Interactions between reactive oxygen species generated by contractile activity and aging in skeletal muscle?
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Interactions between reactive oxygen species generated by contractile activity and aging in skeletal muscle?

机译:收缩活动产生的活性氧与骨骼肌衰老之间的相互作用?

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Significance: Aging leads to a loss of skeletal muscle mass and function that causes instability, increased risk of falls, and need for residential care. This is due to a reduction in the muscle mass and strength that is primarily due caused by a decrease in the number of muscle fibers, particularly, type II fibers, and atrophy and weakening of those remaining. Recent Advances: Although increased oxidative damage was originally thought to be the key to the aging process, data now indicate that reactive oxygen species (ROS) may be one of the several components of the degenerative processes in aging. The skeletal muscle shows important rapid adaptations to the ROS generated by contractions that are attenuated in aged organisms and transgenic studies have indicated that overcoming these attenuated responses can prevent the age-related loss of muscle mass and function. Critical Issues: Elucidation of the mechanisms by which the skeletal muscle adapts to the ROS generated to contractions and the way in which these processes are attenuated by aging is critical to the development of logical approaches to prevent age-related loss of muscle mass and function. Future Directions: Future studies are likely to focus on the redox regulation of adaptive pathways and their maintenance during aging as an approach to maintain and improve muscle function. Antioxid. Redox Signal. 19, 804-812.
机译:启示:衰老会导致骨骼肌质量和功能的丧失,从而导致不稳定,跌倒的风险增加以及需要住院护理。这是由于肌肉质量和强度的减少,这主要是由于肌肉纤维,特别是II型纤维的数量减少,以及剩余纤维的萎缩和减弱而引起的。最新进展:尽管最初认为氧化损伤的增加是老化过程的关键,但现在的数据表明,活性氧(ROS)可能是老化过程中退化过程的几个组成部分之一。骨骼肌显示出对衰老生物体内减弱的收缩产生的ROS的重要快速适应,转基因研究表明,克服这些减弱的反应可以防止与年龄相关的肌肉质量和功能丧失。关键问题:阐明骨骼肌适应于收缩产生的ROS的机制以及这些过程因衰老而减弱的方式,对于开发预防与年龄有关的肌肉质量和功能丧失的逻辑方法至关重要。未来方向:未来的研究可能集中在适应性途径的氧化还原调节及其在衰老过程中的维持,以维持和改善肌肉功能。抗氧化。氧化还原信号。 19,804-812。

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