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首页> 外文期刊>The FASEB Journal >Unacylated ghrelin normalizes skeletal muscle oxidative stress and prevents muscle catabolism by enhancing tissue mitophagy in experimental chronic kidney disease
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Unacylated ghrelin normalizes skeletal muscle oxidative stress and prevents muscle catabolism by enhancing tissue mitophagy in experimental chronic kidney disease

机译:在实验性慢性肾脏疾病中,未酰化的生长素释放肽通过增强组织线粒体自噬使骨骼肌氧化应激正常化并防止肌肉分解代谢

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摘要

Unacylated ghrelin (UnAG) may lower skeletal muscle oxidative stress, inflammation, and insulin resistance in lean and obese rodents. UnAG-induced autophagy activation may contribute to these effects, likely involving removal of dysfunctional mitochondria (mitophagy) and redox state maintenance. In chronic kidney disease (CKD) oxidative stress, inflammation and insulin resistance may negatively influence patient outcome by worsening nutritional state throughmusclemass loss. Herewe showin a 5/ 6 nephrectomy (Nx) CKDratmodel that 4ds. c. UnAG administration (200mg twice aday) normalizes CKD-induced loss of gastrocnemius muscle mass and a cluster of high tissue mitochondrial reactive oxygen species generation, high proinflammatory cytokines, and low insulin signaling activation. Consistent with these results, human uremic serum enhanced mitochondrial reactive oxygen species generation and lowered insulin signaling activation in C2C12 myotubes while concomitant UnAG incubation completely prevented these effects. Importantly, UnAG enhanced muscle mitophagy in vivo and silencing RNA-mediated autophagy protein 5 silencing blocked UnAG activities in myotubes. UnAG therefore normalizes CKD-induced skeletal muscle oxidative stress, inflammation, and low insulin signaling as well as muscle loss. UnAG effects are mediated by autophagy activation at the mitochondrial level. UnAG administration and mitophagy activation are novel potential therapeutic strategies for skeletal muscle metabolic abnormalities and their negative clinical impact in CKD.-Gortan Cappellari, G., Semolic, A., Ruozi, G., Vinci, P., Guarnieri, G., Bortolotti, F., Barbetta, D., Zanetti, M., Giacca, M., Barazzoni, R. Unacylated ghrelin normalizes skeletal muscle oxidative stress and prevents muscle catabolism by enhancing tissue mitophagy in experimental chronic kidney disease.
机译:未酰化生长素释放肽 (UnAG) 可降低瘦和肥胖啮齿动物的骨骼肌氧化应激、炎症和胰岛素抵抗。UnAG 诱导的自噬激活可能有助于这些作用,可能涉及去除功能失调的线粒体(线粒体自噬)和氧化还原状态维持。在慢性肾脏病 (CKD) 氧化应激中,炎症和胰岛素抵抗可能会通过肌肉质量损失恶化营养状态,从而对患者的预后产生负面影响。在这里,我们展示了一个 5/6 肾切除术 (Nx) CKDratmodel that 4ds.c. UnAG给药(200mg,每天两次)使CKD诱导的腓肠肌质量损失和一组高组织线粒体活性氧生成,高促炎细胞因子和低胰岛素信号激活正常化。与这些结果一致,人尿毒症血清增强了 C2C12 肌管中的线粒体活性氧生成并降低了胰岛素信号激活,而伴随的 UnAG 孵育完全阻止了这些作用。重要的是,UnAG增强了体内肌肉线粒体自噬,沉默了RNA介导的自噬蛋白5沉默阻断了肌管中的UnAG活性。因此,UnAG 使 CKD 诱导的骨骼肌氧化应激、炎症和低胰岛素信号传导以及肌肉损失正常化。UnAG 效应由线粒体水平的自噬激活介导。UnAG 给药和线粒体自噬激活是骨骼肌代谢异常及其对 CKD 的负面临床影响的新的潜在治疗策略.-Gortan Cappellari, G., Semolic, A., Ruozi, G., Vinci, P., Guarnieri, G., Bortolotti, F., Barbetta, D., Zanetti, M., Giacca, M., Barazzoni, R. 未酰化生长素释放肽通过增强实验性慢性肾脏病中的组织线粒体自噬使骨骼肌氧化应激正常化并防止肌肉分解代谢。

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