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首页> 外文期刊>Cellular Signalling >KDM3A inhibition modulates macrophage polarization to aggravate post-MI injuries and accelerates adverse ventricular remodeling via an IRF4 signaling pathway
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KDM3A inhibition modulates macrophage polarization to aggravate post-MI injuries and accelerates adverse ventricular remodeling via an IRF4 signaling pathway

机译:KDM3A抑制调节巨噬细胞极化,加剧MI后损伤,通过IRF4信号通路加速不良室外重塑

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摘要

It has been reported that KDM3A participates in several cardiovascular diseases through epigenetic mechanisms. However, its biological role post myocardial infarction (MI) has not been explored. Excessive and prolonged inflammation period can aggravate post-MI injuries and accelerates left ventricular (LV) remodeling. Previous studies have shown that macrophages play a momentous role in post-MI injuries by regulating the balance between the inflammatory phase. In this study, we aimed to demonstrate whether KDM3A could regulate the polarization of macrophages to affect the inflammatory response after myocardial infarction and whether targeting KDM3A could influence the prognosis of myocardial infarction and adverse LV remodeling. To explore the biological function of KDM3A and the underlying mechanisms, the loss of function experiments were designed in vitro and vivo. we analyzed the function of macrophages by a phagocytosis and migration assay and explored the polarization of macrophages. The expression of macrophage inflammation-related genes in the acute inflammatory phase and surface markers was detected by western blot and immunofluorescence assays. Echocardiography, Masson's trichrome staining and hematoxylin and eosin (H&E) staining were used to detect cardiac ventricular function. Our data showed that KDM3A is essential for the biological function of rat bone marrow macrophages (BMDMs), and KDM3A deficiency decreases the capacity for phagocytosis and migration, promoting M1 but restraining M2 macrophage phenotype polarization in vitro. Furthermore, we constructed MI models of male rats to verify that KDM3A deficiency could regulate macrophage polarization to aggravate the inflammatory response and accelerate LV remodeling in vivo. Among them, we confirmed that IRF4 is a downstream effector of the KDM3A-dependent pathway which could epigenetically influence the transcription of IRF4 by enhancing histone H3 lysine 9 di-methylation(H3K9me2) accumulation on the I
机译:据报道,KDM3A通过表观遗传机制参与几种心血管疾病。然而,尚未探讨其心肌梗死后的生物学作用(MI)。过度和长期的炎症期可加剧MI后损伤并加速左心室(LV)重塑。以前的研究表明,通过调节炎症期之间的平衡,巨噬细胞在后mI损伤中起着重要作用。在这项研究中,我们旨在证明KDM3A是否可以调节巨噬细胞的极化来影响心肌梗死后的炎症反应,以及靶向KDM3A是否可以影响心肌梗死和不良LV重塑的预后。为了探讨KDM3A和潜在机制的生物学功能,在体外和体内设计了功能实验的丧失。我们通过吞噬作用和迁移测定分析了巨噬细胞的功能,并探讨了巨噬细胞的极化。通过蛋白质印迹和免疫荧光测定检测急性炎症期和表面标志物中巨噬细胞炎症相关基因的表达。超声心动图,Masson的三色染色和苏索蛋白和曙红(H&E)染色用于检测心室功能。我们的数据表明,KDM3A对于大鼠骨髓巨噬细胞(BMDMS)的生物学功能至关重要,KDM3A缺乏降低吞噬作用和迁移的能力,促进M2,但抑制M2巨噬细胞表型极化在体外。此外,我们构建了雄性大鼠的MI模型,以验证KDM3A缺乏是否可以调节巨噬细胞极化以加剧炎症反应并加速体内LV重塑。其中,我们确认IRF4是KDM3A依赖性途径的下游效应器,其通过增强组蛋白H3赖氨酸9二 - 甲基化(H3K9ME2)积累在I中可以缩短IRF4的转录

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  • 来源
    《Cellular Signalling》 |2019年第2019期|共11页
  • 作者单位

    Wuhan Univ Renmin Hosp Dept Cardiol Cardiovasc Res Inst Hubei Key Lab Cardiol Wuhan 430000 Hubei Peoples R China;

    Wuhan Univ Renmin Hosp Dept Cardiol Cardiovasc Res Inst Hubei Key Lab Cardiol Wuhan 430000 Hubei Peoples R China;

    Wuhan Univ Renmin Hosp Dept Cardiol Cardiovasc Res Inst Hubei Key Lab Cardiol Wuhan 430000 Hubei Peoples R China;

    Wuhan Univ Renmin Hosp Dept Cardiol Cardiovasc Res Inst Hubei Key Lab Cardiol Wuhan 430000 Hubei Peoples R China;

    Wuhan Univ Renmin Hosp Dept Cardiol Cardiovasc Res Inst Hubei Key Lab Cardiol Wuhan 430000 Hubei Peoples R China;

    Wuhan Univ Renmin Hosp Dept Cardiol Cardiovasc Res Inst Hubei Key Lab Cardiol Wuhan 430000 Hubei Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞形态学;
  • 关键词

    KDM3A; Myocardial infarction (MI); Adverse remodeling; Macrophage polarization;

    机译:KDM3A;心肌梗死(MI);不利重塑;巨噬细胞极化;

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