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快速心房起搏通过微小RNA-21下调Smad7诱导家兔心肌纤维化。

Rapid atrial pacing induces myocardial fibrosis by down-regulating Smad7 via microRNA-21 in rabbit.

作者信息

He Xuyu, Zhang Kunyi, Gao Xiuren, Li Liwen, Tan Hong, Chen Jiyan, Zhou Yingling

机构信息

Department of Cardiology, Guangdong Cardiovascular Institute, Guangdong Provincial Key Laboratory of Coronary Disease, Guangdong General Hospital, Guangdong Academy of Medical Sciences, 106 Zhongshan Road 2, Guangzhou, 510080, China.

Sun Yat-sen University Cancer Center, Sun Yat-sen University, Guangzhou, 510060, China.

出版信息

Heart Vessels. 2016 Oct;31(10):1696-708. doi: 10.1007/s00380-016-0808-z. Epub 2016 Mar 11.

Abstract

Tachycardia-induced atrial fibrosis is a hallmark of the structural remodeling of atrial fibrillation (AF). The mechanisms underlying tachycardia-induced atrial fibrosis remain unclear. In our previous study, we found that Smad7-downregulation promoted the development of atrial fibrosis in AF. Fibroblasts are enriched in microRNA-21 (miR-21), which contributes to the development of fibrosis and heart failure in the cardiovascular system. Our study was designed to test the hypothesis that miR-21 reinforces the TGF-β1/Smad signaling pathway in AF-induced atrial fibrosis by down-regulating Smad7. Rapid atrial pacing (RAP, 1000 ppm) was applied to the left atrium of the rabbit heart to induce atrial fibrillation and fibrosis. qRT-PCR and northern blot analysis revealed that RAP caused a marked increase in the expression of miR-21. Transfection with a miR-21 inhibitor significantly increased the expression of Smad7, while the expression of collagen I/III significantly decreased. These changes were implicated in the AF-induced release of miR-21 and down-regulation of Smad7. Adult rat cardiac fibroblasts treated with TGF-β1 showed increased miR-21 expression and decreased Smad7 expression. Pretreatment with a TGF-β1 inhibitor reduced the TGF-β1-induced up-regulation of miR-21. Pretreatment with pre-miR-21 and a miR-21 inhibitor significantly decreased and increased Smad7 expression, respectively. This result was negatively correlated with the expression of collagen I/III in fibroblasts. Moreover, the results of a luciferase activity assay suggest that Smad7 is a validated miR-21 target in CFs. Our results provide compelling evidence that the miR-21 specific degradation of Smad7 may decrease the inhibitory feedback regulation of TGF-β1/Smad signaling and serves as a new insight of the mechanism of atrial fibrosis in atrial fibrillation.

摘要

心动过速诱导的心房纤维化是心房颤动(AF)结构重塑的一个标志。心动过速诱导的心房纤维化的潜在机制仍不清楚。在我们之前的研究中,我们发现Smad7下调促进了AF中心房纤维化的发展。成纤维细胞中富含微小RNA-21(miR-21),其有助于心血管系统中纤维化和心力衰竭的发展。我们的研究旨在验证以下假设:miR-21通过下调Smad7增强AF诱导的心房纤维化中的TGF-β1/Smad信号通路。对兔心脏左心房施加快速心房起搏(RAP,1000 ppm)以诱导心房颤动和纤维化。qRT-PCR和Northern印迹分析显示,RAP导致miR-21表达显著增加。用miR-21抑制剂转染显著增加了Smad7的表达,而I/III型胶原蛋白的表达显著降低。这些变化与AF诱导的miR-21释放和Smad7下调有关。用TGF-β1处理的成年大鼠心脏成纤维细胞显示miR-21表达增加,Smad7表达降低。用TGF-β1抑制剂预处理可降低TGF-β1诱导的miR-21上调。用pre-miR-21和miR-21抑制剂预处理分别显著降低和增加了Smad7的表达。该结果与成纤维细胞中I/III型胶原蛋白的表达呈负相关。此外,荧光素酶活性测定结果表明Smad7是CFs中经过验证的miR-21靶标。我们的结果提供了令人信服的证据,即miR-21对Smad7的特异性降解可能会降低TGF-β1/Smad信号的抑制性反馈调节,并为心房颤动中心房纤维化的机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5fd/5043001/db34feb46923/380_2016_808_Fig1_HTML.jpg

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