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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >The apolipoprotein A-I mimetic peptide, D-4F, alleviates ox-LDL-induced oxidative stress and promotes endothelial repair through the eNOS/HO-1 pathway
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The apolipoprotein A-I mimetic peptide, D-4F, alleviates ox-LDL-induced oxidative stress and promotes endothelial repair through the eNOS/HO-1 pathway

机译:载脂蛋白A-I模拟肽,D-4F可缓解OX-LDL诱导的氧化应激,并通过ENOS / HO-1途径促进内皮修复

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摘要

Abstract Apolipoprotein A-I (apoA-I) mimetic peptide exerts many anti-atherogenic properties. However, the underlying mechanisms related to the endothelial protective effects remain elusive. In this study, the apoA-I mimetic peptide, D-4F, was used. Proliferation assay, wound healing, and transwell migration experiments showed that D-4F improved the impaired endothelial proliferation and migration resulting from ox-LDL. Endothelial adhesion molecules expression and monocyte adhesion assay demonstrated that D-4F inhibited endothelial inflammation. Caspase-3 activation and TUNEL stain indicated that D-4F reduced endothelial cell apoptosis. A pivotal anti-oxidant enzyme, heme oxygenase-1 (HO-1) was upregulated by D-4F. The Akt/AMPK/eNOS pathways were involved in the expression of HO-1 induced by D-4F. Moreover, the anti-oxidation, pro-proliferation, and pro-migration capacities of D-4F were diminished by the inhibitors of both eNOS (L-NAME) and HO-1 (Znpp). Additionally, downregulation of ATP-binding cassette transporter A1 (ABCA1) by siRNA abolished the activation of Akt, AMPK and eNOS, and reduced the upregulation of HO-1 triggered by D-4F. Furthermore, D-4F promoted the reendothelialization of injured intima in carotid artery injury model of C57BL/6J mice in vivo . In summary, these findings suggested that D-4F might be a powerful candidate in the protection of endothelial cells and the prevention of cardiovascular disease (CVD). Highlights ? D-4F upregulated HO-1 expression via Akt/AMPK/eNOS pathway in endothelial cells. ? D-4F scavenged intracellular ROS through eNOS/HO-1 pathway. ? D-4F promoted endothelial repair, and improved endothelial function via eNOS/HO-1.
机译:摘要载脂蛋白A-I(APOA-1)模拟肽施加许多抗致动脉性。然而,与内皮保护效应相关的潜在机制仍然难以捉摸。在该研究中,使用APOA-I模拟肽D-4F。增殖测定,伤口愈合和Transwell迁移实验表明,D-4F改善了由OX-LDL产生的内皮增殖和迁移受损。内皮粘附分子表达和单核细胞粘附测定证明D-4F抑制内皮炎症。 Caspase-3活化和Tunel染色表明D-4F降低内皮细胞凋亡。通过D-4F升高枢轴抗氧化酶,血红素氧合酶-1(HO-1)。 AKT / AMPK / ENOS途径涉及D-4F诱导的HO-1的表达。此外,通过eNOS(L-NAME)和HO-1(ZnPP)的抑制剂来降低D-4F的抗氧化,促进剂和促迁移能力。另外,通过siRNA的ATP结合盒传输仪A1(ABCA1)的下调废除了AKT,AMPK和eNOS的活化,并降低了由D-4F引发的HO-1的上调。此外,D-4F促进了体内C57BL / 6J小鼠颈动脉损伤模型中受损内膜的戒律。总之,这些研究结果表明D-4F可能是保护内皮细胞和预防心血管疾病(CVD)的强大候选者。强调 ? D-4F通过内皮细胞中的AKT / AMPK / ENOS途径上调HO-1表达。还D-4F通过ENOS / HO-1通路清除细胞内ROS。还D-4F促进内皮修复,通过ENOS / HO-1改进内皮功能。

著录项

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  • 作者单位

    Department of Cardiology the Affiliated Xiamen Cardiovascular Hospital of Xiamen University;

    Department of Cardiology the Affiliated Xiamen Cardiovascular Hospital of Xiamen University;

    Department of Cardiology the Affiliated Xiamen Cardiovascular Hospital of Xiamen University;

    High-field NMR Research Center MOE Key Laboratory of Spectrochemical Analysis&

    Instrumentation;

    Department of Cardiology the Affiliated Xiamen Cardiovascular Hospital of Xiamen University;

    Department of Cardiology the Affiliated Xiamen Cardiovascular Hospital of Xiamen University;

    Department of Cardiology the Affiliated Xiamen Cardiovascular Hospital of Xiamen University;

    Department of Ob/Gyn and Neonatal and Reproductive Medicine the People's Liberation Army 174th;

    Department of Ob/Gyn and Neonatal and Reproductive Medicine the People's Liberation Army 174th;

    Department of Cardiology the Affiliated Xiamen Cardiovascular Hospital of Xiamen University;

    Department of Physical Education Xiamen University of Technology;

    High-field NMR Research Center MOE Key Laboratory of Spectrochemical Analysis&

    Instrumentation;

    Department of Cardiology the Affiliated Xiamen Cardiovascular Hospital of Xiamen University;

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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

    apoA-I mimetic peptide; Endothelial cell; HO-1; Proliferation; Migration;

    机译:apoa-i模拟肽;内皮细胞;ho-1;增殖;迁移;

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