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Caloric restriction alleviates aging-related fibrosis of kidney through downregulation of miR-21 in extracellular vesicles

机译:通过细胞外囊中的miR-21下调缓解肾脏衰老肌肤的衰老纤维化

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摘要

Glomerulosclerosis and renal interstitial fibrosis occur with the aging kidney. In this study, we examined the expression of miR-21, peroxisome proliferator-activated receptor(PPARα), hypoxia-inducible factor(HIF-1α) in the kidney of 3-month-old rats fed ad libitum (YAL), 24-month-old rats fed ad libitum (OAL) and 24-month-old rats subjected to a 70% calorie-restricted diet for 8 months (OCR). We found long-term caloric restriction (CR) ameliorated aging and aging-related fibrosis. CR ameliorated the increment of miR-21 and HIF-1α, as well as the decrement of PPARα in old ad libitum group. Human proximal tubular cells (HPTCs) presented phenotypes of senescence and epithelial to mesenchymal transition (EMT) under high-glucose conditions, in which senescence occurred earlier than EMT. Senescent cells secreted extracellular vesicles (EVs) which contained miR-21 into the recipient cells. Inhibiting miR-21 of donor cells prevented the occurrence of EMT in recipient cells. In addition, miR-21 induced EMT through targeting PPARα protein and consequently enhancing HIF-1α expression, although other pathways cannot be ruled out. These findings demonstrated that miR-21-containing EVs derived from the senescent cells could facilitate EMT of HPTCs via PPARα-HIF-1α signaling pathway. Long-term caloric restriction and caloric restriction mimetics alleviated aging-related-fibrosis of kidney through downregulation of miR-21.
机译:老化肾脏发生肾小球粥样硬化和肾间质纤维化。在这项研究中,我们研究了在3个月大鼠AD Libitum(yal),24-的3个月大鼠肾脏中肾上腺素激素激活受体(PPARα),缺氧诱导因子(HIF-1α)的表达。喂养AD Libitum(OAL)和24个月大鼠的月龄大鼠经过70%的卡路里限制饮食8个月(OCR)。我们发现长期热量限制(CR)改善老化和衰老相关的纤维化。 CR改善了miR-21和HIF-1α的增量,以及旧广告中的PPARα递减。人近端管状细胞(HPTC)呈现衰老的表型和高葡萄糖条件下的间充质转换(EMT),其中衰老比EMT早于。将含有miR-21的细胞外囊泡(EV)分泌到受体细胞中的衰老细胞。抑制供体细胞的miR-21阻止了受体细胞中的EMT的发生。此外,MiR-21通过靶向PPARα蛋白诱导EMT,并因此增强HIF-1α表达,尽管不能排除其他途径。这些发现证明,含有衰老细胞的含MiR-21的EVS可以通过PPARα-HIF-1α信号通路促进HPTC的EMT。长期热量限制和热量限制性模拟物缓解了MIR-21下调的肾脏衰老纤维化。

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