首页> 外文期刊>Antioxidants and redox signalling >miR-34a-5p Inhibition Alleviates Intestinal Ischemia/Reperfusion-Induced Reactive Oxygen Species Accumulation and Apoptosis via Activation of SIRT1 Signaling
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miR-34a-5p Inhibition Alleviates Intestinal Ischemia/Reperfusion-Induced Reactive Oxygen Species Accumulation and Apoptosis via Activation of SIRT1 Signaling

机译:miR-34a-5p抑制通过激活SIRT1信号传导减轻肠缺血/再灌注诱导的活性氧的积累和凋亡。

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Aims: Reactive oxygen species (ROS) generation and massive epithelial apoptosis are critical in the pathogenesis of intestinal ischemia/reperfusion (I/R) injury. We previously found that the Sirtuin 1 (SIRT1)-mediated antioxidant pathway was impaired in the intestine after I/R. Here, we investigate the potential role of SIRT1-targeting microRNAs (miRNAs) in regulating ROS accumulation and apoptosis in intestinal I/R, and the important role SIRT1 involved in. Results: C57BL/6 mice were subjected to intestinal I/R induced by occlusion of the superior mesenteric artery followed by reperfusion. Caco-2 cells were incubated under hypoxia/reoxygenation condition to mimic I/R in vivo. We find that SIRT1 is gradually repressed during the early reperfusion, and that this repression results in intestinal ROS accumulation and apoptosis. Using bioinformatics analysis and real-time PCR, we demonstrate that miR-34a-5p and miR-495-3p are significantly increased among the 41 putative miRNAs that can target SIRT1. Inhibition of miR-34a-5p, but not miR-495-3p, attenuates intestinal I/R injury, as demonstrated by repressing p66shc upregulation, manganese superoxide dismutase repression, and the caspase-3 activation in vitro and in vivo; it further alleviates systemic injury, as demonstrated by reducing inflammatory cytokine release, attenuating lung and liver lesions, and improving survival. Interestingly, SIRT1 plays an indispensable role in the protection afforded by miR-34a-5p inhibition. Innovation: This study provides the first evidence of miRNAs in regulating oxidative stress and apoptosis in intestinal I/R. Conclusion: miR-34a-5p knockdown attenuates intestinal I/R injury through promoting SIRT1-mediated suppression of epithelial ROS accumulation and apoptosis. This may represent a novel prophylactic approach to intestinal I/R injury.
机译:目的:活性氧(ROS)的产生和大量上皮细胞凋亡在肠缺血/再灌注(I / R)损伤的发病机理中至关重要。我们之前发现,I / R后,Sirtuin 1(SIRT1)介导的抗氧化剂途径在肠道中受损。在这里,我们调查靶向SIRT1的microRNA(miRNA)在调节肠I / R中ROS积累和凋亡中的潜在作用,以及SIRT1参与其中的重要作用。阻塞肠系膜上动脉,然后再灌注。在缺氧/复氧条件下孵育Caco-2细胞,以在体内模拟I / R。我们发现SIRT1在早期的再灌注过程中逐渐被抑制,并且这种抑制导致肠道ROS的积累和凋亡。使用生物信息学分析和实时PCR,我们证明miR-34a-5p和miR-495-3p在可以靶向SIRT1的41种假定miRNA中显着增加。抑制miR-34a-5p而非抑制miR-495-3p可以减轻肠道I / R损伤,如在体外和体内抑制p66shc上调,锰超氧化物歧化酶抑制以及caspase-3激活所证明的。它进一步减轻了全身性损伤,如减少炎症性细胞因子的释放,减轻肺和肝损伤以及提高生存率所证明的。有趣的是,SIRT1在miR-34a-5p抑制作用提供的保护中起着不可或缺的作用。创新:这项研究提供了miRNA调节肠I / R氧化应激和细胞凋亡的第一个证据。结论:miR-34a-5p敲低可以通过促进SIRT1介导的上皮ROS积累和凋亡的抑制来减轻肠道I / R损伤。这可能代表了肠道I / R损伤的一种新型预防方法。

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