首页> 外文期刊>Diabetes & vascular disease research: official journal of the International Society of Diabetes and Vascular Disease >Microarray analysis of long non-coding RNA and mRNA expression profiles in diabetic cardiomyopathy using human induced pluripotent stem cell-derived cardiomyocytes
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Microarray analysis of long non-coding RNA and mRNA expression profiles in diabetic cardiomyopathy using human induced pluripotent stem cell-derived cardiomyocytes

机译:使用人诱导多能干细胞衍生心肌细胞糖尿病心肌病中长非编码RNA和mRNA表达谱的微阵列分析

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Aim: This study aims to investigate the altered expression signature of long non-coding RNAs, mRNAs and deregulated pathways related to diabetic cardiomyopathy disease pathogenesis. Method: We utilize the previously established in vitro diabetic cardiomyopathy model of human induced pluripotent stem cell-derived human cardiomyocytes to perform long non-coding RNA and mRNA expression analysis on glucose (11 mM), endothelin-1 (10 nM) and cortisol (1 mu M) stimulated human induced pluripotent stem cell-derived human cardiomyocytes to interrogate diabetic cardiomyopathy associated RNA expression profile. Result: Out of 20,730 mRNAs and 40,173 long non-coding RNAs being screened, 2046 long non-coding RNAs and 1582 mRNAs were differentially regulated (fold change 2, p 0.05) between diabetic cardiomyopathy and control group, of which more than half were intergenic and antisense long non-coding RNAs. Most of the coding transcripts were associated with processes like inflammation, structural reorganization, metabolism, smooth muscle contraction, focal adhesion and repair contributing towards the development of diabetic cardiomyopathy. The subgroup analysis further revealed 411 long non-coding RNAs being co-expressed with neighbouring genes. However, our coding-non-coding co-expression analysis showed an overall 48,155 co-expression network connections. In addition to that, the long non-coding RNAs with highest network connections were profoundly enriched for focal adhesion, cell-matrix adhesion and muscle contraction. Conclusion: These results provide comprehensive data about the pathways and regulatory mechanisms associated with diabetic cardiomyopathy and indicate that long non-coding RNAs may play a crucial role in diabetic cardiomyopathy.
机译:目的:本研究旨在探讨与糖尿病心肌病疾病发病机制相关的长期非编码RNA,MRNA和危险途径的改变表达特征。方法:我们利用以前建立的人诱导多能干细胞衍生人心肌细胞的体外糖尿病心肌病模型,对葡萄糖(11mm),内皮素-1(10nM)和皮质醇( 1μm)刺激人诱导多能干细胞衍生的人心肌细胞以询问糖尿病心肌病相关的RNA表达谱。结果:超出20,730 mRNA和40,173筛选的不编码RNA,2046长的非编码RNA和1582mRNA在糖尿病心肌病和对照组之间进行差异调节(折叠变化& 0.05),其中更多超过一半是代际和反义长的非编码RNA。大多数编码转录物与炎症,结构重组,新陈代谢,平滑肌收缩,局灶性粘附和修复有关的过程有关,有助于糖尿病心肌病的发展。亚组分析进一步揭示了411长的非编码RNA与相邻基因共同表达。然而,我们的编码 - 非编码共表达分析显示了整体的48,155个Co表达网络连接。除此之外,具有最高网络连接的长期非编码RNA是深切的富含局灶性粘附,细胞 - 基质粘附和肌肉收缩的富集。结论:这些结果提供了关于与糖尿病心肌病相关的途径和调节机制的综合数据,表明长期非编码RNA可能在糖尿病心肌病中发挥至关重要的作用。

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