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臭氧通过miR-200c/FOXO3轴保护心肌细胞免受心肌缺血再灌注损伤。

Ozone protects cardiomyocytes from myocardial ischemia-reperfusion injury through miR-200c/FOXO3 axis.

作者信息

Zhang Lian, Men Xingping, Yu Shenglong, Guo Huizhuang, Luo Yi, Chen Hanwei, Mi Shaohua

机构信息

The Key Laboratory of Molecular Epigenetics of the Ministry of Education, Northeast Normal University, Changchun, China.

Department of Pathology, The Second Hospital of Jilin University, Changchun, China.

出版信息

J Recept Signal Transduct Res. 2022 Dec;42(6):531-539. doi: 10.1080/10799893.2022.2060259. Epub 2022 May 17.

Abstract

PURPOSE

Myocardial ischemia-reperfusion injury (I/R) is a detrimental process contributing to the pathological progression of coronary artery diseases. Studies indicate that miRNAs are implicated in ischemic heart disease, and ozone therapy could protect the heart from ischemic heart disease. In this study, we investigated the effect of ozone on miR-200c expression and the potential role of miR-200c in an I/R myocardial injury model.

METHODS

A myocardial cellular model of I/R was established to detect the expression of miR-200c. Cardiomyocytes with I/R induction were treated with ozone as a cellular model to detect miR-200 expression and investigate its functional roles. The downstream target of miR-200c was predicted with Starbase online tools and validated by dual luciferase reporter assay. The function of miR-200c/FOXO3 axis in I/R was examined by CCK-8 proliferation and apoptotic assays.

RESULTS

miR-200c was upregulated in primary cardiomyocytes of the I/R model. In cardiomyocyte cells, cell proliferation in the I/R group was significantly impaired, which could be partially rescued by miR-200c inhibitor or ozone treatment. Cell death detected by LDH release and apoptosis assay in the I/R model could also be inhibited by miR-200c inhibitor or ozone treatment. FOXO3 was identified as a downstream target of miR-200c, which was induced by ozone treatment and suppressed by miR-200c. Silencing FOXO3 abrogated the protective effect of ozone treatment on the I/R cell model.

CONCLUSION

Overall, our results suggest that ozone plays a cardio-protective role in I/R through regulating miR-200/FOXO3 axis, and indicate that targeting miR-200/FOXO3 axis could potentially alleviate I/R.

摘要

目的

心肌缺血再灌注损伤(I/R)是导致冠状动脉疾病病理进展的有害过程。研究表明,微小RNA(miRNA)与缺血性心脏病有关,臭氧疗法可保护心脏免受缺血性心脏病的影响。在本研究中,我们调查了臭氧对miR-200c表达的影响以及miR-200c在I/R心肌损伤模型中的潜在作用。

方法

建立I/R心肌细胞模型以检测miR-200c的表达。将诱导I/R的心肌细胞用臭氧处理作为细胞模型,以检测miR-200的表达并研究其功能作用。使用Starbase在线工具预测miR-200c的下游靶标,并通过双荧光素酶报告基因检测进行验证。通过CCK-8增殖和凋亡检测来研究miR-200c/FOXO3轴在I/R中的功能。

结果

miR-200c在I/R模型的原代心肌细胞中上调。在心肌细胞中,I/R组的细胞增殖明显受损,miR-200c抑制剂或臭氧处理可部分挽救这种损伤。I/R模型中通过乳酸脱氢酶(LDH)释放和凋亡检测所检测到的细胞死亡也可被miR-200c抑制剂或臭氧处理所抑制。FOXO3被鉴定为miR-200c的下游靶标,其受到臭氧处理的诱导并被miR-200c抑制。沉默FOXO3消除了臭氧处理对I/R细胞模型的保护作用。

结论

总体而言,我们的结果表明,臭氧通过调节miR-200/FOXO3轴在I/R中发挥心脏保护作用,并表明靶向miR-200/FOXO3轴可能减轻I/R。

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