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miR-155-5p Promotes Oxalate- and Calcium-Induced Kidney Oxidative Stress Injury by Suppressing MGP Expression

机译:MiR-155-5P通过抑制MGP表达促进促草酸和钙诱导的肾氧化胁迫损伤

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Oxalate and calcium are the major risk factors for calcium oxalate (CaOx) stone formation. However, the exact mechanism remains unclear. This study was designed to confirm the potential function of miR-155-5p in the formation of CaOx induced by oxalate and calcium oxalate monohydrate (COM). The HK-2 cells were treated by the different concentrations of oxalate and COM for 48?h. We found that oxalate and COM treatment significantly increased ROS generation, LDH release, cellular MDA levels, and H2O2 concentration in HK-2 cells. The results of qRT-PCR and western blot showed that expression of NOX2 was upregulated, while that of SOD-2 was downregulated following the treatment with oxalate and COM in HK-2 cells. Moreover, the results of miRNA microarray analysis showed that miR-155-5p was significantly upregulated after oxalate and COM treated in HK-2 cells, but miR-155-5p inhibitor treatment significantly decreased ROS generation, LDH release, cellular MDA levels, and H2O2 concentration in HK-2 cells incubated with oxalate and COM. miR-155-5p negatively regulated the expression level of MGP via directly targeting its 3′-UTR, verified by the Dual-Luciferase Reporter System. In vivo, polarized light optical microphotography showed that CaOx crystal significantly increased in the high-dose oxalate and Ca2+ groups compared to the control group. Furthermore, IHC analyses showed strong positive staining intensity for the NOX-2 protein in the high-dose oxalate and Ca2+-treated mouse kidneys, and miR-155-5p overexpression can further enhance its expression. However, the expression of SOD-2 protein was weakly stained. In conclusion, our study indicates that miR-155-5p promotes oxalate- and COM-induced kidney oxidative stress injury by suppressing MGP expression.
机译:草酸盐和钙是草酸钙(曹)石形成的主要危险因素。但是,确切的机制仍然不清楚。本研究旨在确认MiR-155-5P在形成草酸盐和草酸钙一水合物(COM)诱导的诱导的CaOX中的潜在功能。通过不同浓度的草酸盐和48℃处理HK-2细胞。我们发现HK-2细胞中的草酸盐和COM处理显着增加了ROS生成,LDH释放,细胞MDA水平和H 2 O 2浓度。 QRT-PCR和Western印迹的结果表明NOx2的表达上调,而SOD-2的表达在用草酸盐和HK-2细胞中处理后下调。此外,MiRNA微阵列分析结果表明,在HK-2细胞中草酸盐和COM处理后MiR-155-5P显着上调,但MIR-155-5P抑制剂治疗显着降低了ROS产生,LDH释放,细胞MDA水平和HK-2细胞中的H 2 O 2浓度与草酸盐和COM一起孵育。 MiR-155-5P通过直接靶向其3'-UTR对MGP的表达水平负调,由双荧光素酶报告系统验证。在体内,偏振光光学缩放表明,与对照组相比,高剂量的草酸盐和CA2 +基团CAX晶体显着增加。此外,IHC分析显示出高剂量草酸盐和Ca2 + -Treated小鼠肾脏中NOx-2蛋白的强阳性染色强度,并且miR-155-5p过表达可以进一步增强其表达。然而,SOD-2蛋白的表达弱染色。总之,我们的研究表明MIR-155-5P通过抑制MGP表达来促进草酸盐和COM诱导的肾氧化胁迫损伤。

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