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Skeletal muscle unloading results in increased mitophagy and decreased mitochondrial biogenesis regulation

机译:骨骼肌卸料导致含量增加和线粒体生物发生调控增加

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Abstract Introduction Physical inactivity significantly contributes to loss of muscle mass and performance in bed‐bound patients. Loss of skeletal muscle mitochondrial content has been well‐established in muscle unloading models, but the underlying molecular mechanism remains unclear. We hypothesized that apparent unloading‐induced loss of muscle mitochondrial content is preceded by increased mitophagy‐ and decreased mitochondrial biogenesis‐signaling during the early stages of unloading. Methods We analyzed a comprehensive set of molecular markers involved in mitochondrial‐autophagy, ?biogenesis, ?dynamics, and ‐content, in the gastrocnemius muscle of C57BL/6J mice subjected to 0‐ and 3‐days hind limb suspension, and in biopsies from human vastus lateralis muscle obtained before and after 7?days of one‐leg immobilization. Results In both mice and men, short‐term skeletal muscle unloading results in molecular marker patterns indicative of increased receptor‐mediated mitophagy and decreased mitochondrial biogenesis regulation, before apparent loss of mitochondrial content. Discussion These results emphasize the early‐onset of skeletal muscle disuse‐induced mitochondrial remodeling.
机译:摘要引言物理不活动显着导致床染患者损失肌肉质量和性能。骨骼肌线粒体含量的损失在肌肉卸料模型中已经很好地建立了很好的成熟,但底层的分子机制仍然尚不清楚。我们假设表观卸载诱导的肌肉线粒体含量的丧失在卸载的早期阶段期间增加了肠球和减少的线粒体生物发生 - 信号传导。方法分析了一系列综合的分子标记,参与线粒体 - 自噬,生物生成,α生物学,和 - 在C57BL / 6J小鼠的胃肠肌中进行0-和3天后肢悬浮液,以及来自的活组织检查在7?天的一腿固定之前和之后获得的人类覆盖物肌肉。导致小鼠和男性,短期骨骼肌卸载导致分子标记模式,该分子标记模式指示增加受体介导的水道和下降的线粒体生物发生调节,在表观损失的线粒体含量之前。讨论这些结果强调骨骼肌消除诱导的线粒体重塑的早期发作。

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