首页> 外文期刊>BMC Pulmonary Medicine >Emodin inhibits viability, proliferation and promotes apoptosis of hypoxic human pulmonary artery smooth muscle cells via targeting miR-244-5p/DEGS1 axis
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Emodin inhibits viability, proliferation and promotes apoptosis of hypoxic human pulmonary artery smooth muscle cells via targeting miR-244-5p/DEGS1 axis

机译:大黄素通过靶向miR-244-5p / degs1轴来抑制活力,增殖和促进缺氧人肺动脉平滑肌细胞的凋亡

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This study aimed to determine the effects of emodin on the viability, proliferation and apoptosis of human pulmonary artery smooth muscle cells (PASMCs) under hypoxia and to explore the underling molecular mechanisms. PASMCs were cultured in a hypoxic environment (1% oxygen) and then treated with emodin. Cell viability, proliferation and apoptosis were evaluated using CCK-8 assay, EdU staining assay, western blot and Mito-tracker red CMXRos and Annexin V-FITC apoptosis detection assay. The microRNA (miRNA)/mRNA and protein expression levels were assessed by quantitative real-time PCR and western blotting, respectively. Based on transcriptomics and proteomics were used to identify potential signaling pathways. Luciferase reporter assay was utilized to examine the interaction between miR-244-5p and DEGS1. Emodin at 40 and 160 μM concentration-dependently suppressed cell viability, proliferation and migration, but enhanced cell apoptosis of PASMCs under hypoxia. Transcriptomic and proteomic analysis revealed that emodin could attenuate the activity of PI3K/Akt signaling in PASMCs under hypoxia. In addition, delta 4-desaturase, sphingolipid 1 (DEGS1) was found to be a direct target of miR-244-5p. Emodin could significantly up-regulated miR-244-5p expression and down-regulated DEGS1 expression in PASMCs under hypoxia. Furthermore, emodin-mediated effects on cell viability, migration, apoptosis and PI3K/Akt signaling activity of PASMCs under hypoxia were significantly attenuated by miR-244-5p knockdown. Our results indicated that emodin suppressed cell viability, proliferation and migration, promoted cell apoptosis of PASMCs under hypoxia via modulating miR-244-5p-mediated DEGS1/PI3K/Akt signaling pathway. MiR-244-5p/DEGS1 axis was initially investigated in this current study, which is expected to further the understanding of the etiology of pulmonary arterial hypertension.
机译:本研究旨在确定大黄素对缺氧下人肺动脉平滑肌细胞(PASMC)的活力,增殖和凋亡的影响,探讨楼层分子机制。 Pasmcs在缺氧环境(1%氧)中培养,然后用大蛋白处理。使用CCK-8测定,EDU染色测定,Western印迹和Mito-Tracker Red CMXRO和Annexin V-Fitc凋亡检测测定评估细胞活力,增殖和细胞凋亡。通过定量实时PCR和Western印迹评估MicroRNA(miRNA)/ mRNA和蛋白表达水平。基于转录组织和蛋白质组学,用于识别潜在的信号传导途径。利用荧光素酶报告器测定检查MiR-244-5P和DEGS1之间的相互作用。在40和160μM浓度下浓度抑制细胞活力,增殖和迁移,但在缺氧下增强了PASMC的细胞凋亡。转录组和蛋白质组学分析表明,大黄素可以在缺氧下衰减PASMC中PI3K / AKT信号传导的活性。此外,发现δ4-去饱和酶Sphingolipid 1(DEGS1)是miR-244-5p的直接靶标。在缺氧下的PASMC中,大黄素可显着上调miR-244-5p表达和下调的DEGS1表达和下调的DEGS1表达。此外,在缺氧下缺氧下PASMCS的细胞活力,迁移,细胞凋亡和PI3K / AKT信号传导活性的效果显着降低了MiR-244-5P敲低。我们的结果表明,大黄素抑制了细胞活力,增殖和迁移,通过调节miR-244-5p介导的DEGS1 / PI3K / AKT信号通路促进了缺氧下PASMC的细胞凋亡。最初在本前研究中研究了MiR-244-5P / DEGS1轴,预计将进一步了解肺动脉高血压的病因。

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