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Redox signaling in skeletal muscle: role of aging and exercise

机译:骨骼肌中的氧化还原信号:衰老和运动的作用

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Skeletal muscle contraction is associated with the production of ROS due to altered O-2 distribution and flux in the cell. Despite a highly efficient antioxidant defense, a small surplus of ROS, such as hydrogen peroxide and nitric oxide, may serve as signaling molecules to stimulate cellular adaptation to reach new homeostasis largely due to the activation of redox-sensitive signaling pathways. Recent research has highlighted the important role of NF-kappa B, MAPK, and peroxisome proliferator-activated receptor-gamma coactivator-1 alpha, along with other newly discovered signaling pathways, in some of the most vital biological functions, such as mitochondrial biogenesis, antioxidant defense, inflammation, protein turnover, apoptosis, and autophagy. There is evidence that the inability of the cell to maintain proper redox signaling underlies some basic mechanisms of biological aging, during which inflammatory and catabolic pathways eventually predominate. Physical exercise has been shown to activate various redox signaling pathways that control the adaptation and remodeling process. Although this stimulatory effect of exercise declines with aging, it is not completed abolished. Thus, aged people can still benefit from regular physical activity in the appropriate forms and at proper intensity to preserve muscle function.
机译:由于细胞中O-2分布和通量的改变,骨骼肌收缩与ROS的产生有关。尽管具有高效的抗氧化剂防御功能,但由于氧化还原敏感的信号传导途径的激活,少量的过剩ROS(例如过氧化氢和一氧化氮)仍可以作为信号传导分子来刺激细胞适应以达到新的体内平衡。最近的研究强调了NF-κB,MAPK和过氧化物酶体增殖物激活的受体-γcoactivator-1 alpha以及其他新发现的信号通路在某些最重要的生物学功能(例如线粒体生物发生)中的重要作用,抗氧化剂防御,炎症,蛋白质更新,细胞凋亡和自噬。有证据表明,细胞无法维持适当的氧化还原信号是生物衰老的一些基本机制,在此期间,炎症和分解代谢途径最终占主导地位。体育锻炼已显示出激活控制适应和重塑过程的各种氧化还原信号通路。尽管锻炼的刺激作用会随着年龄的增长而降低,但尚未完全消除。因此,老年人仍可以以适当的形式和适当的强度从定期的体育锻炼中受益,以保持肌肉功能。

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