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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >MicroRNA-143-3p promotes human cardiac fibrosis via targeting sprouty3 after myocardial infarction
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MicroRNA-143-3p promotes human cardiac fibrosis via targeting sprouty3 after myocardial infarction

机译:MicroRNA-143-3P通过靶向Sprouty3促进人体心肌纤维化,在心肌梗死后靶向

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摘要

Myocardial infarction (MI) is one of the most catastrophic diseases threatening human health in the world. Because cardiomyocytes have a minuscule regenerative potential, the natural repair of infarct healing after MI shows fibrotic scar. MicroRNA-143-3p (miR-143-3p) plays a critical regulatory role in various pathophysiological processes in the heart. Sprouty3 (SPRY3) is predicted to be a potential fibrosis-associated target gene of miR-143-3p. The aim was to explore the role and mechanism of miR-143-3p in the infarct healing after MI in vivo and in vitro. Myocardial samples were obtained during autopsy from 12 human patients with or without MI. An increase in miR-143-3p mRNA levels was detected in the infarct zone of human MI samples. Moreover, silencing expression of miR-143-3p by antagomir-143-3p alleviated fibrotic scar in MI model of mice. To assess the mechanism by which miR-143-3p may function in fibrosis, human cardiac fibroblasts (HCFs) were transfected with miR-143-3p mimics and inhibitors. MiR-143-3p overexpression promoted HCFs proliferation, migration, transformation, and extracellular matrix (ECM) excessive accumulation. Additionally, miR-143-3p inhibitors reversed the fibrosis effect of HCFs treated with transforming growth beta 1 (TGF beta 1) in vitro. Importantly, a luciferase reporter assay demonstrated that miR-143-3p could directly bind to the 3'-untranslational region (3'-UTR) of SPRY3 mRNA. Lastly, HCFs transfected with SPRY3 siRNA (si-SPRY3) enhanced the activation of the P38, ERK, and JNK pathways in the process of fibrosis. MiR-143-3p promoted fibrosis along with SPRY3 degradation and the activation of its downstream P38, ERK, and JNK pathways. Our results may contribute to improve the quality of life in MI patients by interfering with the role of miR-143-3p in MI area.
机译:心肌梗死(MI)是威胁世界危及世界人类健康的灾难性疾病之一。因为心肌细胞具有较小的再生潜力,因此MI后梗塞愈合的自然修复显示纤维化瘢痕。 MicroRNA-143-3P(MIR-143-3P)在心脏的各种病理生理过程中起着严重的调节作用。预计Sprouty3(Spry3)是miR-143-3p的潜在纤维化相关靶基因。目的是探讨mi-143-3p在体内和体外mi后梗塞愈合中miR-143-3p的作用和机制。在有或没有MI的12例人类患者的尸检期间获得了心肌样品。在人Mi样品的梗塞区中检测到miR-143-3p mRNA水平的增加。此外,在小鼠MI模型中静脉-143-3P缓解miR-143-3p的表达。为了评估miR-143-3p可以在纤维化中起作用的机制,用miR-143-3p模拟物和抑制剂转染人心肌成纤维细胞(HCF)。 miR-143-3p过表达促进HCFS增殖,迁移,转化和细胞外基质(ECM)过度积累。此外,MIR-143-3P抑制剂逆转了在体外转化生长β1(TGFβ1)处理HCF的纤维化作用。重要的是,荧光素酶报告器测定证明miR-143-3p可以直接与spry3 mRNA的3'-未翻译区域(3'-UTR)结合。最后,用SPry3 siRNA(Si-Spry3)转染的HCF在纤维化过程中增强了P38,ERK和JNK途径的激活。 miR-143-3p促进纤维化以及Spry3降解和下游P38,ERK和JNK途径的激活。我们的结果可能通过干扰MI区MIR-143-3P的作用,有助于提高MI患者的生活质量。

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  • 作者单位

    Dalian Med Univ Dept Pathol &

    Forens Med Coll Basic Med Sci 9th Lvshun South Rd Dalian 116044;

    Dalian Med Univ Dept Pathol &

    Forens Med Coll Basic Med Sci 9th Lvshun South Rd Dalian 116044;

    Dalian Med Univ Dept Pathol &

    Forens Med Coll Basic Med Sci 9th Lvshun South Rd Dalian 116044;

    Dalian Med Univ Dept Pathol &

    Forens Med Coll Basic Med Sci 9th Lvshun South Rd Dalian 116044;

    Dalian Med Univ Dept Pathol &

    Forens Med Coll Basic Med Sci 9th Lvshun South Rd Dalian 116044;

    Dalian Med Univ Dept Pathol &

    Forens Med Coll Basic Med Sci 9th Lvshun South Rd Dalian 116044;

    Dalian Med Univ Dept Pathol &

    Forens Med Coll Basic Med Sci 9th Lvshun South Rd Dalian 116044;

    Dalian Med Univ Coll Basic Med Sci Dept Elect Microscope Dalian 116044 Liaoning Peoples R China;

    Dalian Med Univ Dept Pathol &

    Forens Med Coll Basic Med Sci 9th Lvshun South Rd Dalian 116044;

    Dalian Med Univ Dept Pathol &

    Forens Med Coll Basic Med Sci 9th Lvshun South Rd Dalian 116044;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 心脏、血管(循环系)疾病 ;
  • 关键词

    MiR-143-3p; SPRY3; Cardiac fibrosis; MAPK pathway;

    机译:mir-143-3p;spry3;心肌纤维化;mapk途径;

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