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首页> 外文期刊>Journal of King Saud University >MiR-15a regulates bicuspid aortic valve calcification via TGF-β signaling pathway via inhibiting Smad7
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MiR-15a regulates bicuspid aortic valve calcification via TGF-β signaling pathway via inhibiting Smad7

机译:miR-15a通过抑制Smad7通过TGF-β信号通路调节双裂主动脉瓣钙化

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BackgroundBicuspid aortic valve is a heritable heart valve disease with characteristic early onset of valve calcification and stenosis with rapid progression compared with tricuspid aortic valve. Strong evidence indicates that many miRNAs and their target genes are involved in the development of BAV calcification. This study was designed to investigate miR-15a and Smad7 expressions in BAV and their mechanism of regulating calcification.MethodsImmunohistochemistry and western blotting were used to explore the expression levels of Smad7 and Runx2 in human aortic valve tissue. The expression of miR-15a, Smad7 and Runx2 were detected by RT-PCR. The relationship between miR-15a and Smad7 was assessed by dual-luciferase assay. MiR-15a was overexpressed in cultured porcine valve interstitial cells (PVICs) and the variations of Smad7 and Runx2 mRNA were evaluated by RT-PCR, as well as the changes of Smad7 and Runx2 protein. Alizarin reds staining was used to verify the calcification inhibition effect of miR-15a in cultured PVICs under calcification induction.ResultsCompared with calcified TAV, remarkable higher expression of Smad7 and Runx2 were found in calcified BAV, significantly lower expressions of miR-15a and higher expressions of Smad7 and Runx2 mRNA, along with negative correlation between expressions of miR-15a and mRNA level of Smad7. MiR-15a-overexpressed PVICs shown upregulation of miR-15a, downregulation of Smad7 and Runx2 expression. PVICs under calcification induction shown significantly reduced calcification in miR-15a-overexpressed group.ConclusionsThe lower miR-15a expression in BAV results in the high expression of Smad7, thereby reducing antagonism of Smad2/3–Smad4 complex to runx2 and promoting the progress of BAV calcification.
机译:背景比例主动脉瓣是一种可遗传的心脏瓣膜病,与三尖翼主动脉瓣相比,具有瓣膜钙化和狭窄的特征性早期发作。强有力的证据表明许多miRNA及其目标基因涉及BAV钙化的发展。本研究旨在调查BAV中的MIR-15A和SMAD7表达及其调节钙化机制。方法用于探讨人主动脉瓣膜组织中SMAD7和RUNX2的表达水平。通过RT-PCR检测miR-15a,smad7和runx2的表达。通过双荧光素酶测定评估miR-15a和smad7之间的关系。 miR-15a在培养的猪瓣膜间质细胞(pvics)中过表达,并通过RT-PCR评估SMAD7和RUNX2 mRNA的变化,以及SMAD7和RUNX2蛋白的变化。茜素红染色用于验证miR-15a在钙化诱导下培养的pvi草钙化抑制效应。钙化BAV的钙化TAV和runx2的表达显着较高,MIR-15a和更高表达的表达显着较高。 SMAD7和RUNX2 mRNA,以及MIR-15a和SMAD7 mRNA水平之间的负相关性。 MiR-15A过表达PVICS显示MIR-15A的上调,SMAD7和RUNX2表达的下调。钙化诱导下的PVIC显示MiR-15a-overexx抑制的钙化显着降低钙化。结论较低的miR-15a在BAV中的表达导致Smad7的高表达,从而减少了Smad2 / 3-Smad4复合物的拮抗作用并促进了BAV的进展。钙化。

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