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首页> 外文期刊>Journal of Cachexia, Sarcopenia and Muscle >Suppression of muscle wasting by the plant-derived compound ursolic acid in a model of chronic kidney disease
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Suppression of muscle wasting by the plant-derived compound ursolic acid in a model of chronic kidney disease

机译:慢性肾脏疾病模型中植物来源的复合乌苏酸抑制肌肉萎缩

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Abstract Background Muscle wasting in chronic kidney disease (CKD) and other catabolic disorders contributes to morbidity and mortality, and there are no therapeutic interventions that regularly and safely block losses of muscle mass. We have obtained evidence that impaired IGF-1/insulin signalling and increases in glucocorticoids, myostatin and/or inflammatory cytokines that contribute to the development of muscle wasting in catabolic disorders by activating protein degradation. Methods Using in vitro and in vivo models of muscle wasting associated with CKD or dexamethasone administration, we measured protein synthesis and degradation and examined mechanisms by which ursolic acid, derived from plants, could block the loss of muscle mass stimulated by CKD or excessive levels of dexamethasone. Results Using cultured C2C12 myotubes to study muscle wasting, we found that exposure to glucocorticoids cause loss of cell proteins plus an increase in myostatin; both responses are significantly suppressed by ursolic acid. Results from promoter and ChIP assays demonstrated a mechanism involving ursolic acid blockade of myostatin promoter activity that is related to CEBP/???′ expression. In mouse models of CKD-induced or dexamethasone-induced muscle wasting, we found that ursolic acid blocked the loss of muscle mass by stimulating protein synthesis and decreasing protein degradation. These beneficial responses included decreased expression of myostatin and inflammatory cytokines (e.g. TGF-???2, IL-6 and TNF???±), which are initiators of muscle-specific ubiquitin-E3 ligases (e.g. Atrogin-1, MuRF-1 and MUSA1). Conclusions Ursolic acid improves CKD-induced muscle mass by suppressing the expression of myostatin and inflammatory cytokines via increasing protein synthesis and reducing proteolysis.
机译:摘要背景慢性肾脏病(CKD)和其他分解代谢性疾病中的肌肉消瘦会导致发病和死亡,目前尚无定期安全地阻止肌肉质量流失的治疗性干预措施。我们已经获得证据表明,IGF-1 /胰岛素信号传导受损,糖皮质激素,肌生长抑制素和/或炎性细胞因子的增加,这些糖通过激活蛋白质降解而导致分解代谢紊乱中的肌肉萎缩。方法使用与CKD或地塞米松给药相关的肌肉消瘦的体内和体外模型,我们测量了蛋白质的合成和降解,并研究了植物来源的熊果酸可以阻止CKD刺激的肌肉质量或过量的肌肉吸收的机制。地塞米松。结果使用培养的C2C12肌管研究肌肉消瘦,我们发现暴露于糖皮质激素会导致细胞蛋白损失以及肌生长抑制素增加。熊果酸可显着抑制这两种反应。启动子和ChIP测定的结果证明了涉及熊果酸阻断肌生长抑制素启动子活性的机制,该机制与CEBP /β'表达有关。在CKD诱导或地塞米松诱导的肌肉消瘦的小鼠模型中,我们发现熊果酸通过刺激蛋白质合成和减少蛋白质降解来阻止肌肉质量的损失。这些有益的反应包括肌生长抑制素和炎性细胞因子(例如TGF-β2,IL-6和TNF-α)的表达降低,它们是肌肉特异性泛素E3连接酶(例如Atrogin-1,MuRF- 1和MUSA1)。结论熊果酸可通过增加蛋白质合成和减少蛋白水解来抑制肌生长抑制素和炎性细胞因子的表达,从而改善CKD诱导的肌肉质量。

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