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首页> 外文期刊>American Journal of Physiology >Oxidative stress, apoptosis, and proteolysis in skeletal muscle repair after unloading.
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Oxidative stress, apoptosis, and proteolysis in skeletal muscle repair after unloading.

机译:卸载后骨骼肌修复中的氧化应激,凋亡和蛋白水解。

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Although several lines of evidence link muscle-derived oxidants and inflammation to skeletal muscle wasting via regulation of apoptosis and proteolysis, little information is currently available on muscle repair. The present work was designed to study oxidative stress response, inflammatory cytokines, apoptotic, or proteolytic pathways during the early (1 and 5 days) and later (14 days) stages of the regrowth process subsequent to 14 days of hindlimb unloading. During the early stages of reloading, muscle mass recovery (day 5) was facilitated by transcriptional downregulation (day 1) of pathways involved in muscle proteolysis [mu-calpain, atrogin-1/muscle atrophy F-box (MAFbx), and muscle RING finger-1/(MuRF1) mRNA] and upregulation of an autophagy-related protein Beclin-1 (day 5). At the same time, oxidative stress (glutathione vs. glutathione disulfide ratio, superoxide dismutase, catalase activities) remained still enhanced, whereas the increased uncoupling protein 3 gene expression recovered. Increased caspase-9 (mitochondrial-driven apoptosis) and decreased caspase-12 (sarcoplasmic reticulum-mediated apoptosis) activation was also normalized at early stages (day 5). Conversely, the receptor-mediated apoptotic pathway initiated by ligand-induced (tumor necrosis factor-alpha, TNF-alpha) binding and promoting the activation of caspase-8 remained elevated until 14 days. Our data suggest that at early stages, muscle repair is mediated via the modulation of mitochondrial-driven apoptosis and muscle proteolysis. Despite full muscle mass recovery, oxidative stress and TNF-alpha-mediated apoptotic pathway are still activated till later stages of muscle remodeling.
机译:尽管有许多证据表明,通过调节细胞凋亡和蛋白水解作用,可以将肌肉来源的氧化剂和炎症与骨骼肌消耗联系起来,但目前关于肌肉修复的信息很少。本工作旨在研究在后肢卸载14天后的早期(1和5天)和后期(14天)阶段的氧化应激反应,炎性细胞因子,细胞凋亡或蛋白水解途径。在重新加载的早期阶段,参与肌肉蛋白水解[mu-calpain,atrogin-1 /肌肉萎缩性F-box(MAFbx)和肌肉RING的途径的转录下调(第1天)促进了肌肉质量的恢复(第5天)。 Finger-1 /(MuRF1)mRNA]和自噬相关蛋白Beclin-1的上调(第5天)。同时,氧化应激(谷胱甘肽与谷胱甘肽二硫化物比,超氧化物歧化酶,过氧化氢酶活性)仍然增强,而解偶联蛋白3基因表达增加。在早期阶段(第5天),caspase-9的增加(线粒体驱动的凋亡)和caspase-12的减少(肌浆网介导的凋亡)激活也被标准化。相反地​​,由配体诱导的(肿瘤坏死因子-α,TNF-α)结合和促进caspase-8激活所引发的受体介导的凋亡途径一直保持升高,直到14天。我们的数据表明,在早期阶段,肌肉修复是通过线粒体驱动的细胞凋亡和肌肉蛋白水解的调节介导的。尽管完全恢复了肌肉质量,但氧化应激和TNF-α介导的凋亡途径仍被激活,直到肌肉重塑的后期。

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