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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Metformin Reduces the Senescence of Renal Tubular Epithelial Cells in Diabetic Nephropathy via the MBNL1/miR-130a-3p/STAT3 Pathway
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Metformin Reduces the Senescence of Renal Tubular Epithelial Cells in Diabetic Nephropathy via the MBNL1/miR-130a-3p/STAT3 Pathway

机译:二甲双胍通过MBNL1 / miR-130A-3P / Stat3途径减少糖尿病肾病中肾小管上皮细胞的衰老

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摘要

Senescence of renal tubular epithelial cells plays an important role in diabetic nephropathy, but the mechanism is unknown. Metformin may alleviate diabetic nephropathy by reducing this senescence. This study is aimed at clarifying the effects and mechanism of metformin on the senescence of renal tubular epithelial cells in diabetic nephropathy. We found that metformin reduced the expression of senescence-associated gene P21 in high-glucose-induced (30?mmol/L) renal tubular epithelial cells and decreased the β-galactosidase positive staining rate (decreased 16%, p0.01). Metformin was able to reduce senescence by upregulating the expression of RNA-binding protein MBNL1 and miR-130a-3p and reducing STAT3 expression. MBNL1 prolonged the half-life of miR-130a-3p, and miR-130a-3p could negatively regulate STAT3 by binding to its mRNA 3′UTR. In db/db diabetic mice, we found an enhanced senescence level combined with low expression of MBNL1 and miR-130a-3p and high expression of STAT3 compared with db/m control mice during nephropathy development. Meanwhile, metformin (200?mg/kg/day) could increase the expression of MBNL1 and miR-130a-3p and decreased STAT3 expression, thus reducing this senescence in db/db mice. Our results suggest that metformin reduces the senescence of renal tubular epithelial cells in diabetic nephropathy via the MBNL1/miR-130a-3p/STAT3 pathway, which provided new ideas for the therapy of this disease.
机译:肾小管上皮细胞的衰老在糖尿病肾病中起重要作用,但该机制是未知的。二甲双胍可以通过减少这种衰老来缓解糖尿病肾病。本研究旨在阐明二甲双胍对糖尿病肾病中肾小管上皮细胞衰老的影响和机制。我们发现二甲双胍在高葡萄糖诱导的(30?Mmol / L)肾小管上皮细胞中的表达降低了衰老相关基因P21,并降低了β-半乳糖苷酶阳性染色速率(下降16%,P <0.01)。二甲双胍能够通过上调RNA结合蛋白MBN11和MIR-130A-3P的表达并减少STAT3表达来减少衰老。 MBNL1延长miR-130a-3p的半衰期,MiR-130a-3p可以通过与其mRNA 3'UTR结合来负调节STAT3。在DB / DB糖尿病小鼠中,与肾病发育过程中的DB / M对照小鼠相比,我们发现增强的衰老水平与MBN11和MIR-130A-3P的低表达和STAT3的高表达。同时,二甲双胍(200×mg / kg /天)可以增加Mbn11和miR-130a-3p的表达并降低的STAT3表达,从而在DB / dB小鼠中降低了该衰老。我们的研究结果表明,二甲双胍通过MBNL1 / miR-130A-3P / Stat3途径减少了糖尿病肾病中肾小管上皮细胞的衰老,为该疾病的治疗提供了新的思路。

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