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首页> 外文期刊>Biochemical and Biophysical Research Communications >ROS feedback regulates the microRNA-19-targeted inhibition of the p47phox-mediated LPS-induced inflammatory response
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ROS feedback regulates the microRNA-19-targeted inhibition of the p47phox-mediated LPS-induced inflammatory response

机译:ROS反馈调节MicroRNA-19靶向抑制P47phox介导的LPS诱导的炎症反应

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In acute lung injury/acute respiratory distress syndrome (ALI/ARDS), pathogenesis is associated with the regulation of macrophage-generated oxidative stress, and nicotinamide adenine dinucleotide phosphate (NADPH) oxidase (NOX)-derived reactive oxygen species(ROS) are key to regulating oxidative stress. In the present study, we found that miR-19 inhibited the expression of p47phox in macrophages, resulting in the alleviation of the lipopolysaccharides(LPS)-induced inflammatory response. In a mouse LPS-induced model of lung injury, miR-19-deficient murine lung tissue was more susceptible to inflammatory responses and exhibited a higher infiltration rate, a higher number of inflammatory cells in the lungs, a higher level of inflammatory cytokines in the Bronchoalveolar lavage fluid (BALF), and more severe pathological damage in lung tissues. Moreover, following stimulation with LPS, p47phox was expressed at lower levels in miR-19-deficient murine pulmonary inflammatory cells than in those in wild-type rats. In LPS-treated Raw264.7 macrophages, miR-19 mimics blocking the down-regulation of LPS-induced p47phox expression, the accumulation of ROS, and the release of inflammatory cytokines. When siRNA was used to interfere with p47phox expression following stimulation with LPS, a lower level of ROS-mediated inflammatory cytokines were released. We found that the accumulation of ROS inhibited the LPS-induced release of inflammatory cytokines, the upregulation of miR-19 and the down-regulation of LPS-induced p47phox expression. Finally, we constructed a p47phox 3 ' UTR luciferase reporter plasmid to provide direct confirmation that miR-19 targets p47phox expression. The results of this study indicate the presence of a mechanism by which miR-19 regulates oxidative stress in macrophages. These data also provide potential targets for studies aimed at developing therapies for ARDS. (C) 2017 Published by Elsevier Inc.
机译:在急性肺损伤/急性呼吸窘迫综合征(ALI / ARDS)中,发病机制与巨噬细胞产生的氧化应激的调节有关,烟酰胺腺嘌呤二核苷酸磷酸酯(NADPH)氧化酶(NOx)的反应性氧(ROS)是关键调节氧化应激。在本研究中,我们发现miR-19抑制了巨噬细胞中p47phox的表达,导致脂多糖(LPS)诱导的炎症反应的缓解。在小鼠LPS诱导的肺损伤模型中,MIR-19缺陷的鼠肺组织更容易受到炎症反应的影响,并且表现出较高的渗透率,肺中炎性细胞数量较高,炎症细胞因子较高支气管肺泡灌洗液(BALF),肺组织中更严重的病理损伤。此外,在用LPS刺激后,在miR-19缺乏鼠肺炎症细胞的较低水平下表达p47phox,而不是野生型大鼠的血液型大鼠。在LPS治疗的RAW264.7巨噬细胞中,MIR-19模仿阻断LPS诱导的P47phox表达,ROS的积累和炎症细胞因子的释放的下调。当使用LPS刺激后SiRNA干扰P47phox表达时,释放较低水平的ROS介导的炎性细胞因子。我们发现ROS的积累抑制了LPS诱导的炎性细胞因子的释放,miR-19的上调和LPS诱导的P47phox表达的下调。最后,我们构建了一种P47phox 3'UTR荧光素酶报告称粒质粒,以提供miR-19靶向p47phox表达的直接确认。该研究的结果表明MIR-19调节巨噬细胞中氧化应激的机制的存在。这些数据还提供旨在为ARDS制定疗法的研究的潜在目标。 (c)2017年由elsevier公司发布

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