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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >miRNA-146a Mimic Inhibits NOX4/P38 Signalling to Ameliorate Mouse Myocardial Ischaemia Reperfusion (I/R) Injury
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miRNA-146a Mimic Inhibits NOX4/P38 Signalling to Ameliorate Mouse Myocardial Ischaemia Reperfusion (I/R) Injury

机译:MiRNA-146A模拟抑制NOX4 / P38信号传导于改善小鼠心肌缺血再灌注(I / R)损伤

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摘要

Evidence suggests that miR-146a is implicated in the pathogenesis of cardiovascular diseases; however, the role of miR-146a in myocardial ischaemia reperfusion (I/R) injury is unclear. The aim of this study was to explore the functional role of miR-146a in myocardial ischaemia reperfusion injury and the underlying mechanism. C57BL/6J mice were subjected to 45?min of ischaemia and 1 week of reperfusion to establish a myocardial I/R injury model. A miR-146a mimic (0.5?mg/kg) was administered intravenously at the beginning of the ischaemia process. Neonatal rat cardiomyocytes were also subjected to hypoxia/reperfusion (H/R). Cells were treated with the miR-146a mimic or antagonist. As a result, the miR-146a mimic attenuated H/R-induced cardiomyocyte injury, as evidenced by increased cell viability and reduced lactate dehydrogenase (LDH) levels. In addition, the miR-146a mimic inhibited oxidative stress in cells suffering from H/R injury. Moreover, the miR-146a antagonist exerted adverse effects in vitro. In mice with myocardial I/R injury, the miR-146a mimic preserved cardiac function and reduced the infarction area and fibrosis. Moreover, the miR-146a mimic decreased the inflammatory response and reactive oxygen species (ROS) accumulation in mouse hearts. Mechanistically, we found that miR-146a directly regulated the transcription of NOX4, which subsequently affected P38 signalling in cardiomyocytes. When we knocked down NOX4, the effects of the miR-146a antagonist in worsening the cell condition were counteracted in in vitro experiments. Taken together, the results suggest that miR-146a protects against myocardial ischaemia reperfusion injury by inhibiting NOX4 signalling. The miR-146a mimic may become a potential therapeutic approach for patients with myocardial ischaemia reperfusion.
机译:证据表明miR-146a涉及心血管疾病的发病机制;然而,miR-146a在心肌缺血再灌注(I / R)损伤中的作用尚不清楚。本研究的目的是探讨miR-146a在心肌缺血再灌注损伤和潜在机制中的功能作用。将C57BL / 6J小鼠进行45粒缺血和1周再灌注,以建立心肌I / R损伤模型。在缺血过程开始时静脉内施用miR-146a模拟(0.5×mg / kg)。新生大鼠心肌细胞也进行缺氧/再灌注(H / R)。用miR-146a模拟或拮抗剂处理细胞。结果,MIR-146A模拟衰减的H / R诱导的心肌细胞损伤,如增加的细胞活力和减少的乳酸脱氢酶(LDH)水平所证明。此外,miR-146a模拟抑制患有H / R损伤的细胞中的氧化应激。此外,miR-146a拮抗剂在体外发挥不良反应。在心肌I / R损伤的小鼠中,MIR-146A模拟保存的心脏功能并降低了梗死区域和纤维化。此外,miR-146a模拟降低小鼠心中的炎症反应和反应性氧气(ROS)积累。机械地,我们发现miR-146a直接调节NOx4的转录,其随后在心肌细胞中影响p38信号传导。当我们击倒NOX4时,在体外实验中抵消了MIR-146A拮抗剂对细胞状况恶化的影响。结果表明,MIR-146A通过抑制NOX4信号传导来保护抗心肌缺血再灌注损伤。 miR-146a模仿可能成为心肌缺血再灌注患者的潜在治疗方法。

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