首页> 外文期刊>International journal of molecular medicine >lncRNA NEAT1 ameliorates LPS?induced inflammation in MG63 cells by activating autophagy and suppressing the NLRP3 inflammasome
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lncRNA NEAT1 ameliorates LPS?induced inflammation in MG63 cells by activating autophagy and suppressing the NLRP3 inflammasome

机译:LNCRNA neat1通过激活自噬和抑制NLRP3炎症,改善LPS诱导Mg63细胞中的炎症

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The mechanisms of inflammation in bone and joint tissue are complex and involve long non?coding RNAs (lncRNAs), which play an important role in this process. The aim of the present study was to screen out differentially expressed genes in human osteoblasts stimulated by inflammation, and to further explore the mechanisms underlying inflammatory responses and the functional activity of human osteoblasts through bioinformatics methods and in?vitro experiments. For this purpose, MG63 cells were stimulated with various concentrations of lipopolysaccharide (LPS) for different periods of time to construct an optimal inflammatory model and RNA sequencing was then performed on these cells. The levels of nuclear enriched abundant transcript?1 (NEAT1), various inflammatory factors, Nod?like receptor protein?3?(NLRP3) protein and osteogenesis?related proteins, as well as the levels of cell apoptosis? and cell cycle?related markers were measured in MG63 cells stimulated with LPS, transfected with NEAT1 overexpression plasmid and treated with bexarotene by western blot analysis, RT?qPCR, immunofluorescence, FISH, TEM and flow cytometry. There were 427 differentially expressed genes in the LPS?stimulated MG63 cells, in which NEAT1 was significantly downregulated. LPS upregulated the expression of inflammatory cytokines and NLRP3, inhibited the expression of autophagy?related and osteogenesis?related proteins, promoted apoptosis and altered the cell cycle, which was partially inhibited by NEAT1 overexpression and promoted by bexarotene. LPS stimulated inflammation in the MG63 cells and inhibited the retinoid?X receptor?(RXR)?α to downregulate the expression of NEAT1 and decrease levels of autophagy, which promoted the activation of NLRP3 and the release of inflammatory factors, and impaired the functional activity of osteoblasts, thus promoting the development of inflammation.
机译:骨和关节组织中炎症的机制是复杂的并且涉及长的非α(LNCRNA),在该过程中起重要作用。本研究的目的是筛选通过炎症刺激的人成骨细胞中的差异表达基因,并进一步探讨通过生物信息学方法和体外实验的炎症反应的机制和人骨细胞的功能活性。为此目的,在不同的时间内用各种浓度的脂多糖(LPS)刺激MG63细胞以构建最佳炎症模型,然后对这些细胞进行RNA测序。核富含丰富的成绩单?1(neat1),各种炎症因素,点头?如受体蛋白?3?(NLRP3)蛋白和骨质发生?相关蛋白质,以及细胞凋亡的水平?和细胞周期?在用LPS刺激的Mg63细胞中测量相关标志物,用Neat1过表达质粒转染并通过Western印迹分析,RtβqPCR,免疫荧光,鱼,TEM和流式细胞术用苯甲酰致干燥。 LPS中有427个差异表达的基因?刺激的Mg63细胞,其中Neat1显着下调。 LPS上调了炎性细胞因子和NLRP3的表达,抑制了自噬的表达?相关蛋白质,促进细胞凋亡并改变细胞周期,由Neat1过表达抑制并通过苯甲烯促进。 LPS刺激Mg63细胞中的炎症并抑制视黄醇αx受体?(RXR)?α〜α下调整齐1的表达和自噬减少,这促进了NLRP3的激活和炎症因子的释放,并损害了功能活性成骨细胞,从而促进炎症的发育。

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