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Dysregulation of microRNAs in a mouse model of diabetic myocardial fibrosis

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【作者】 郭林林黄帅朱杰宁林秋雄符永恒谭虹虹余细勇林曙光单志新

【Author】 GUO Lin-lin1,2,HUANG Shuai1,2,ZHU Jie-ning1,LIN Qiu-xiong1,FU Yong-heng1,TAN Hong-hong1,YU Xi-yong1,LIN Shu-guang1,SHAN Zhi-xin1 1.Research Center of Guangdong General Hospital,Guangdong Provincial Cardiovascular Institute,Guangdong Academy of Medical Sciences,Guangzhou 510080,China.2.Shantou University Medical College,Shantou 515041,China

【机构】 Research Center of Guangdong General HospitalGuangdong Provincial Cardiovascular InstituteGuangdong Academy of Medical SciencesShantou University Medical College

【摘要】 Background Myocardial fibrosis plays a critical role in the process of diabetic cardiac remolding.MicroRNAs (miRNAs) are endogenous,small non-coding RNAs that negatively regulate gene expression in diverse biological and pathological processes.However,the roles of miRNAs in myocardial fibrosis have not been well elucidated.In the present study,miRNAs profiles in the fibrotic myocardium of db/db mice and miRNAs expression in TGF-β1-stimulated mouse cardiac myofibroblasts was examined.Methods Heart function of 18-week-old db/db mice and db/m control mice was detected by echocardiography.miRNA expression profile in diabetic myocardium was detected by miRNA microarray.Quantitative real-time PCR was used to determine the expression of fibrosis-related genes and miRNA precursors of interest.Western blot was used to detect the levels of fibrosis-related proteins,activated Smad3 and total Smad3.Results The result of echocardiography showed that left ventricular systolic and diastolic function was impaired in 18-week-old db/db mice without significant change of ejection fraction (EF) and fractional shortening (FS).Fibrosis-related genes expression was upregulated and the amount of phosphorylated Smad3 was increased significantly in the diabetic myocardium.miRNAs dysregulation was shown in diabetic myocardium,sixty-eight miRNAs,including miR-208b,miR-29b,miR-26b and miR-30e,were increased over two-fold,meanwhile,sixty-two miRNAs were decreased more than two-fold in the myocardium of db/db mice compared to db/m controls.In parallel with a significant upregulation of Col1a1,Col3a1 and CTGF miRNA expression,miR-208b,miR-29b,miR-26b and miR-30e precursors were also shown to be upregulated in TGF-β1-induced C57bl/6 mouse cardiac myofibroblasts.Conclusions microRNAs were dysregulated in diabetic myocardium,with the activation of TGF-β/smad3 pathway,contributing to diabetic myocardial fibrosis.

【Abstract】 Background Myocardial fibrosis plays a critical role in the process of diabetic cardiac remolding.MicroRNAs (miRNAs) are endogenous,small non-coding RNAs that negatively regulate gene expression in diverse biological and pathological processes.However,the roles of miRNAs in myocardial fibrosis have not been well elucidated.In the present study,miRNAs profiles in the fibrotic myocardium of db/db mice and miRNAs expression in TGF-β1-stimulated mouse cardiac myofibroblasts was examined.Methods Heart function of 18-week-old db/db mice and db/m control mice was detected by echocardiography.miRNA expression profile in diabetic myocardium was detected by miRNA microarray.Quantitative real-time PCR was used to determine the expression of fibrosis-related genes and miRNA precursors of interest.Western blot was used to detect the levels of fibrosis-related proteins,activated Smad3 and total Smad3.Results The result of echocardiography showed that left ventricular systolic and diastolic function was impaired in 18-week-old db/db mice without significant change of ejection fraction (EF) and fractional shortening (FS).Fibrosis-related genes expression was upregulated and the amount of phosphorylated Smad3 was increased significantly in the diabetic myocardium.miRNAs dysregulation was shown in diabetic myocardium,sixty-eight miRNAs,including miR-208b,miR-29b,miR-26b and miR-30e,were increased over two-fold,meanwhile,sixty-two miRNAs were decreased more than two-fold in the myocardium of db/db mice compared to db/m controls.In parallel with a significant upregulation of Col1a1,Col3a1 and CTGF miRNA expression,miR-208b,miR-29b,miR-26b and miR-30e precursors were also shown to be upregulated in TGF-β1-induced C57bl/6 mouse cardiac myofibroblasts.Conclusions microRNAs were dysregulated in diabetic myocardium,with the activation of TGF-β/smad3 pathway,contributing to diabetic myocardial fibrosis.

【基金】 supported by Grants from the National Natural Science Foundation of China (No.81070102);the Natural Science Foundation of the Guangdong Province (No.10151008004000035,S2011020005911)
  • 【文献出处】 South China Journal of Cardiology ,岭南心血管病杂志(英文版) , 编辑部邮箱 ,2012年01期
  • 【分类号】R587.2;R542.2
  • 【被引频次】2
  • 【下载频次】91
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