首页> 美国卫生研究院文献>Journal of Cellular and Molecular Medicine >MicroRNA‐30c suppresses the pro‐fibrogenic effects of cardiac fibroblasts induced by TGF‐β1 and prevents atrial fibrosis by targeting TGFβRII
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MicroRNA‐30c suppresses the pro‐fibrogenic effects of cardiac fibroblasts induced by TGF‐β1 and prevents atrial fibrosis by targeting TGFβRII

机译:MicroRNA-30c抑制TGF-β1诱导的心脏成纤维细胞的促纤维化作用并通过靶向TGFβRII防止心房纤维化

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摘要

Atrial fibrosis serves as an important contributor to atrial fibrillation (AF). Recent data have suggested that microRNA‐30c (miR‐30c) is involved in fibrotic remodelling and cancer development, but the specific role of miR‐30c in atrial fibrosis remains unclear. The purpose of this study was to investigate the role of miR‐30c in atrial fibrosis and its underlying mechanisms through in vivo and in vitro experiments. Our results indicate that miR‐30c is significantly down‐regulated in the rat abdominal aortic constriction (AAC) model and in the cellular model of fibrosis induced by transforming growth factor‐β1 (TGF‐β1). Overexpression of miR‐30c in cardiac fibroblasts (CFs) markedly inhibits CF proliferation, differentiation, migration and collagen production, whereas decrease in miR‐30c leads to the opposite results. Moreover, we identified TGFβRII as a target of miR‐30c. Finally, transferring adeno‐associated virus 9 (AAV9)‐miR‐30c into the inferior vena cava of rats attenuated fibrosis in the left atrium following AAC. These data indicate that miR‐30c attenuates atrial fibrosis via inhibition of CF proliferation, differentiation, migration and collagen production by targeting TGFβRII, suggesting that miR‐30c might be a novel potential therapeutic target for preventing atrial fibrosis.
机译:心房纤维化是心房纤颤(AF)的重要因素。最近的数据表明,microRNA-30c(miR-30c)与纤维化重塑和癌症发展有关,但miR-30c在心房纤维化中的具体作用仍不清楚。这项研究的目的是通过体内和体外实验研究miR-30c在心房纤维化中的作用及其潜在机制。我们的结果表明,在大鼠腹主动脉缩窄(AAC)模型和由转化生长因子-β1(TGF-β1)诱导的纤维化细胞模型中,miR-30c明显下调。 miR-30c在心脏成纤维细胞(CFs)中的过表达显着抑制CF增殖,分化,迁移和胶原蛋白生成,而miR-30c的下降则导致相反的结果。此外,我们确定了TGFβRII是miR-30c的靶标。最后,将腺相关病毒9(AAV9)-miR-30c转移到大鼠的下腔静脉中,从而减轻了AAC后左心房的纤维化。这些数据表明,miR-30c通过靶向TGFβRII抑制CF的增殖,分化,迁移和胶原蛋白的产生来减轻心房纤维化,这表明miR-30c可能是预防心房纤维化的新型潜在治疗靶标。

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