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The Role of Mitochondrial Stress in Muscle Wasting Following Severe Burn Trauma

机译:线粒体应激在严重烧伤创伤后肌肉萎缩的作用

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Increased resting metabolic rate and skeletal muscle wasting are hallmarks of the pathophysiological stress response to severe burn trauma. However, whether these two responses occur independently in burn patients or are in fact related remains unclear. In light of recent evidence demonstrating that increased proteolysis in skeletal muscle of burned patients is accompanied by mitochondrial hypermetabolism, oxidative stress, and protein damage; in this article, we discuss the evidence for a role for the mitochondrion in skeletal muscle wasting following severe burn trauma. In particular, we focus on the role of mitochondrial superoxide production in oxidative stress and subsequent proteolysis, and discuss the role of the mitochondrion as a signaling organelle resulting in protein catabolism in other cellular compartments following severe burn trauma.
机译:增加休息代谢率和骨骼肌浪费是对严重烧伤创伤的病理生理应激反应的标志。 然而,这两个反应是否在烧伤患者中独立发生,或者实际上相关仍然不清楚。 鉴于最近证明烧伤患者骨骼肌中骨折增加的蛋白水解伴有线粒体超代谢,氧化应激和蛋白质损伤; 在本文中,我们讨论了在严重烧伤创伤后丢失的骨骼肌中线粒体作用的证据。 特别是,我们专注于线粒体超氧化物产生在氧化应激和随后的蛋白水溶液中的作用,并讨论了线粒体作为信号细胞器的作用,导致在严重烧伤后的其他细胞室中的蛋白质分解代谢。

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