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miR32-5p promoted vascular smooth muscle cell calcification by upregulating TNFα in the microenvironment

机译:MiR32-5P通过上调微环境中的TNFα促进血管平滑肌细胞钙化

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Vascular calcification is often associated with chronic inflammation and is a risk factor for brain arterial stiffness. Our previous results showed that miR32-5p was positively correlated with vascular smooth muscle cells (VSMC) calcification, but it is unclear whether miR32-5p promoted VSMC calcification by regulating inflammatory factor production. In this study, bioinformatics analysis was used to select tumour necrosis factor α (TNFα) as a candidate inflammatory factor associated with calcification. Moreover, alizarin red staining and qRT-PCR analysis revealed that TNFα produced by BV2 cells was the key promoting factor of VSMC calcification. Interestingly, the expression of TNFα was significantly increased at the mRNA and protein levels after miR32-5p mimic treatment but significantly decreased after miR32-5p antagomir treatment. To explore the mechanism of the regulation of TNFα expression by miR32-5p, bioinformatics analysis indicated that PIKfyve was a candidate target gene of miR32-5p, and luciferase assays verified that the expression of PIKfyve was significantly repressed by miR32-5p mimics. Importantly, rescue experiments showed that the expression of TNFα in BV2 cells treated with miR32-5p antagomir and the PIKfyve inhibitor YM201636 was significantly increased. The production of TNFα in microglia could be affected by miR32-5p targeting PIKfyve, and these results will be beneficial to reveal the mechanism of brain arterial calcification.
机译:血管钙化通常与慢性炎症有关,是脑动脉僵硬度的危险因素。我们以前的结果表明,MiR32-5P与血管平滑肌细胞(VSMC)钙化呈正相关,但目前尚不清楚MIR32-5P是否通过调节炎症因子生产来促进VSMC钙化。在该研究中,使用生物信息学分析来选择肿瘤坏死因子α(TNFα)作为与钙化相关的候选炎症因子。此外,茜素红染色和QRT-PCR分析显示,BV2细胞产生的TNFα是VSMC钙化的关键促进因子。有趣的是,在MiR32-5P的mIMIC治疗后MRNA和蛋白质水平在mRNA和蛋白质水平下显着增加TNFα的表达,但在MIR32-5P抗肿瘤治疗后显着降低。为了探讨MiR32-5P调节TNFα表达的机制,生物信息学分析表明,PIKFyve是MiR32-5P的候选靶基因,荧光素酶测定核实MiR32-5P模拟方法显着压抑了PIKFyve的表达。重要的是,救援实验表明,用mir32-5p intagomir和pikfyve抑制剂Ym201636处理的Bv2细胞中Tnfα的表达显着增加。微胶质细胞中TNFα的生产可能受到靶向Pikfyve的miR32-5p的影响,这些结果将有利于揭示脑动脉钙化的机制。

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