首页> 外文期刊>Tropical Journal of Pharmaceutical Research >LncRNA SNHG1 protects the cardiac muscle cells from hypoxia/ re-oxygenation injury in vitro by targeting microRNA-21-5p and miR-30a-5p
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LncRNA SNHG1 protects the cardiac muscle cells from hypoxia/ re-oxygenation injury in vitro by targeting microRNA-21-5p and miR-30a-5p

机译:LNCRNA SNHG1通过靶向MicroRNA-21-5P和MIR-30A-5P,保护心肌细胞免受缺氧/再氧化损伤的影响

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Purpose: Cardiovascular diseases are responsible for numerous deaths globally. Long noncoding RNA SNHG1 has presented its protective role in cardiomyocytes previously. Herein, we examined the underlying molecular mechanisms of SNHG1 in cardiac muscle cells from hypoxia and re-oxygenation (H/R) in vitro. Methods: RT-qPCR measured ex pression of SNHG1, miR-21-5p and miR-30a-5p in rat cardiac muscle cell line HL-1 before and after H/R treatment and cell transfection, which was applied to regulate ex pression of SNHG1, miR-21-5p and miR-30a-5p for further use. The flow cytometry method was used to compare changes in cellular apoptosis, and cell viability was measured by CCK-8 method. Bioinformatics predicted the bindings ofSNHG1 and miR-21-5p / miR-30a-5p while the luciferase reporter assays further verified this. Results: The outcomes revealedthat SNHG1 was downregulated and meanwhile miR-21-5p / miR-30a-5p was elevated that enhanced apoptosis and reduced cell viability in HL-1 cells. However, overexpressed SNHG1 inhibited cell apoptosis and increased cell viability brought by H/R. In addition, SNHG1 targeted at miR-21-5p/ miR-30a-5p, which contributed to the inter-regulation in between. Furthermore, interactive experiments revealed that upregulation of miR-21-5p/ miR-30a-5p added to the cell apoptosis which was induced by H/R and partially counteracted by the upregulation of SNHG1. Conclusion: In this study we have demonstrated the protective role of SNHG1 in the moderation of H/R-induced HL-1 apoptosis and viability through suppression of miR-21-5p/miR-30a-5p. This offers new perspective into the molecular interpretation of cardiovascular diseases such as ischemic reperfusion injury.
机译:目的:心血管疾病是全球许多死亡的原因。长度无量子RNA SnHG1先前在心肌细胞中呈现了其保护作用。在此,我们在体外检查了来自缺氧和再氧合(H / R)的心肌细胞中SNHG1的底层分子机制。方法:在H / R治疗和细胞转染之前和后,RT-QPCR测量大鼠心肌细胞系HL-1中的SNHG1,miR-21-5p和miR-30a-5p的压力,用于调节Exclation SNHG1,MIR-21-5P和MIR-30A-5P进一步使用。流式细胞术法用于比较细胞凋亡的变化,通过CCK-8方法测量细胞活力。生物信息学预测含有NHG1和MIR-21-5P / miR-30A-5P的结合,而荧光素酶报告结果进一步验证了这一点。结果:揭示了SNHG1的结果下调,同时MiR-21-5P / miR-30A-5P升高,提高了HL-1细胞中的细胞凋亡和降低的细胞活力。然而,过表达的SNHG1抑制细胞凋亡和H / R带来的细胞活力增加。此外,SNHG1靶向miR-21-5p / mir-30a-5p,这有助于间之间的调节间。此外,交互实验表明,在通过H / R诱导的细胞凋亡中加入miR-21-5p / miR-30a-5p的上调,并通过SNHG1的上调部分地抵消。结论:在本研究中,我们已经证明了SNHG1在H / R诱导的HL-1凋亡的适度的保护作用,通过抑制miR-21-5p / miR-30a-5p。这提供了新的视角,进入了缺血再灌注损伤等心血管疾病的分子解释。

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