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首页> 外文期刊>Nature Communications >Sepsis induces long-term metabolic and mitochondrial muscle stem cell dysfunction amenable by mesenchymal stem cell therapy
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Sepsis induces long-term metabolic and mitochondrial muscle stem cell dysfunction amenable by mesenchymal stem cell therapy

机译:脓毒症可通过间充质干细胞疗法诱发长期代谢和线粒体肌肉干细胞功能障碍

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Sepsis, or systemic inflammatory response syndrome, is the major cause of critical illness resulting in admission to intensive care units. Sepsis is caused by severe infection and is associated with mortality in 60% of cases. Morbidity due to sepsis is complicated by neuromyopathy, and patients face long-term disability due to muscle weakness, energetic dysfunction, proteolysis and muscle wasting. These processes are triggered by pro-inflammatory cytokines and metabolic imbalances and are aggravated by malnutrition and drugs. Skeletal muscle regeneration depends on stem (satellite) cells. Herein we show that mitochondrial and metabolic alterations underlie the sepsis-induced long-term impairment of satellite cells and lead to inefficient muscle regeneration. Engrafting mesenchymal stem cells improves the septic status by decreasing cytokine levels, restoring mitochondrial and metabolic function in satellite cells, and improving muscle strength. These findings indicate that sepsis affects quiescent muscle stem cells and that mesenchymal stem cells might act as a preventive therapeutic approach for sepsis-related morbidity.
机译:败血症或全身性炎症反应综合征是导致重症监护病房入院的重大疾病的主要原因。败血症是由严重感染引起的,在60%的病例中与死亡率相关。败血症导致的发病率并发神经肌病,并且由于肌肉无力,精力充沛的功能障碍,蛋白水解和肌肉消瘦,患者面临长期残疾。这些过程是由促炎性细胞因子和代谢失衡触发的,并且由于营养不良和药物而加剧。骨骼肌的再生取决于干细胞(卫星)。在这里,我们表明线粒体和代谢改变是败血症诱导的卫星细胞长期损伤的基础,并导致无效的肌肉再生。间充质干细胞的移植通过降低细胞因子水平,恢复卫星细胞的线粒体和代谢功能以及提高肌肉强度来改善败血病状态。这些发现表明败血症影响静止的肌肉干细胞,而间充质干细胞可能作为败血症相关疾病的预防性治疗方法。

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