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Inhibition of miR-34a-5p alleviates hypoxia-reoxygenation injury by enhancing autophagy in steatotic hepatocytes

机译:抑制miR-34a-5p可通过增强脂肪肝细胞的自噬来减轻缺氧-复氧损伤

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Hypoxia-reoxygenation (H/R) injury in steatotic hepatocytes has been implicated in liver dysfunction after liver transplantation. MicroRNAs (miRs) play important roles in regulating several cell biology mechanisms related to H/R injury. However, the role of miRs in regulating H/R injury in steatotic hepatocytes is still unclear. We established anin vitromodel for studying H/R injury in steatotic hepatocytes and identified miR-34a-5p as a miR that was substantially upregulated in steatotic hepatocytes under H/R challenge. MiR-34a-5p expression was modified by transfecting miR-34a-5p mimic and inhibitor into H/R-challenged steatotic hepatocytes. We found that inhibition of miR-34a-5p alleviated H/R-induced apoptosis and promoted post-H/R proliferation in steatotic hepatocytes. Whereas, overexpression of miR-34a-5p augmented H/R-induced apoptosis and prohibited post-H/R proliferation. By examining autophagy, our data demonstrated that miR-34a-5p suppressed autophagy in H/R-challenged steatotic hepatocytes, induction of autophagy partially rescued the exaggeration of H/R injury induced by miR-34a-5p mimic, while inhibition of autophagy impaired the protection of the miR-34a-5p inhibitor against H/R injury. In conclusion, miR-34a-5p is crucial in exaggerating H/R injury, likely by suppressing autophagy in steatotic hepatocytes. Inhibition of miR-34a may be a promising strategy to protect steatotic hepatocytes against H/R-injury.
机译:肝移植后,脂肪变性肝细胞的缺氧-复氧(H / R)损伤与肝功能障碍有关。 MicroRNA(miR)在调节与H / R损伤相关的几种细胞生物学机制中起重要作用。然而,miR在调节脂肪肝细胞H / R损伤中的作用仍不清楚。我们建立了一个体外模型来研究脂肪肝细胞的H / R损伤,并将miR-34a-5p鉴定为在H / R刺激下在脂肪肝细胞中实质上上调的miR。通过将miR-34a-5p模拟物和抑制剂转染到H / R挑战的脂肪变性肝细胞中,可以修饰MiR-34a-5p的表达。我们发现抑制miR-34a-5p减轻了H / R诱导的凋亡,并促进了脂肪肝细胞中的H / R后增殖。而miR-34a-5p的过度表达会增加H / R诱导的细胞凋亡,并阻止H / R后的增殖。通过检查自噬,我们的数据表明,miR-34a-5p抑制了H / R挑战的脂肪肝细胞中的自噬,自噬的诱导部分挽救了miR-34a-5p模拟物诱导的H / R损伤的扩大,而对自噬的抑制作用减弱miR-34a-5p抑制剂对H / R损伤的保护作用。总之,miR-34a-5p在扩大H / R损伤中至关重要,可能是通过抑制脂肪肝细胞中的自噬。抑制miR-34a可能是保护脂肪肝细胞免受H / R损伤的有前途的策略。

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