Upregulation of miR-29b contributes to the anti-fibrotic effect of macrophage migration inhibitory factor in diabetic myocardial fibrosis

被引:0
作者
邹笑 [1 ,2 ]
袁伟伟 [2 ]
朱杰宁 [2 ]
梁业由 [3 ]
林秋雄 [2 ]
邓春玉 [2 ]
符永恒 [2 ]
谭虹虹 [2 ]
邝素娟 [2 ]
杨慧 [2 ]
单志新 [2 ]
机构
[1] Shantou University Medical College
[2] Guangdong General Hospital,Guangdong Provincial Cardiovascular Institute and Guangdong Academy of Medical Sciences
[3] School of Pharmaceutical Sciences,Southern Medical University
关键词
macrophage migration inhibitory factor; microRNA-29b; diabetes; cardiac fibroblasts; myocardial fibrosis;
D O I
暂无
中图分类号
R587.1 [糖尿病];
学科分类号
1002 ; 100201 ;
摘要
Background Macrophage migration inhibitory factor(MIF) possesses proinflammatory function when secreted from the cells, and it also exhibits antioxidant properties based on its intrinsic oxidoreductase activity.However, the role of MIF in cardiac fibrosis is not well known. In the present study, the effect of MIF on fibrosis-associated gene expression and the underlying mechanism were examined. Methods The collagen content in mouse myocardium was detected by Masson staining. Expressions of MIF and fibrosis-associated Col1a1, Col3a1 and α-SMA in mouse myocardium or mouse cardiac fibroblasts were detected by quantitative real-time PCR and Western blot assay, respectively. Mature miR-29b expressions in mouse myocardium and cardiac fibroblasts were determined by real-time PCR. Smad3 activation in MIF-treated cardiac fibroblasts was also detected by Western blot assay. Results Compared with the db / m control mice, the collagen content was significantly increased in the myocardium of diabetic db / db mice. MIF was up-regulated, but miR-29b was down-regulated in the diabetic myocardium. Quantitative real-time PCR and Western blot assay showed that MIF could inhibit fibrosis-associated Col1a1, Col3a1 and α-SMA expressions in mouse cardiac fibroblasts.Smad3 activation was inhibited, but miR-29b was up-regulated in MIF-treated cardiac fibroblasts. Enforced expression of miR-29b significantly suppressed Col1a1, Col3a1, and α-SMA mRNA and 1protein expressions in cardiac fibroblasts. Conclusions MIF possesses the anti-fibrosis activity through inhibiting Smad3activation and through up-regulating miR-29b expression, and miR-29b can inhibit fibrosis-associated Col1a1,Col3a1 and α-SMA expressions in cardiac fibroblasts.
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页码:46 / 54
页数:9
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