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Oncostatin M and TLR-4 Ligand Synergize to Induce MCP-1, IL-6, and VEGF in Human Aortic Adventitial Fibroblasts and Smooth Muscle Cells

机译:抑癌素M和TLR-4配体协同诱导人主动脉外膜成纤维细胞和平滑肌细胞中的MCP-1,IL-6和VEGF

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Accumulating evidence suggests that adventitial fibroblasts play a significant role in contributing to inflammation of the arterial wall and pathogenesis of atherosclerosis. The effects of gp130 cytokines on these cells (including oncostatin M-[OSM] and IL-6), some of which have been implicated in atherosclerosis, are currently unknown. Experiments were performed to determine whether gp130 cytokines regulate human aortic adventitial fibroblasts (HAoAFs) or smooth muscle cells (HAoSMCs) alone or in context of TLR-4 ligands (also implicated in atherosclerosis). HAoAFs and HAoSMCs were stimulated with LPS and/or one of OSM, IL-6, IL-11, IL-31, or LIF. ELISAs performed on cell supernatants showed that stimulation with OSM alone caused increased MCP-1, IL-6, and VEGF levels. When combined, LPS and OSM synergized to increase MCP-1, IL-6, VEGF protein, and mRNA expression as assessed by qRT-PCR, in both HAoAFs and HAoSMCs, while LPS-induced IL-8 levels were reduced. Such effects were not observed with other gp130 cytokines. Signalling pathways including STATs, MAPKinases, and NFκB were activated, and LPS induced steady state mRNA levels of the OSM receptor chains OSMRβand gp130. The results suggest that OSM is able to synergize with TLR-4 ligands to induce proinflammatory responses by HAoAFs and HAoSMCs, supporting the notion that OSM regulation of these cells contributes to the pathogenesis of atherosclerosis.
机译:越来越多的证据表明,外膜成纤维细胞在促进动脉壁炎症和动脉粥样硬化的发病机理中起着重要作用。目前尚不清楚gp130细胞因子对这些细胞(包括制瘤素M- [OSM]和IL-6)的作用,其中一些与动脉粥样硬化有关。进行实验以确定gp130细胞因子是单独调节人类主动脉外膜成纤维细胞(HAoAFs)还是平滑肌细胞(HAoSMCs)或在TLR-4配体(也与动脉粥样硬化有关)的条件下进行调节。用LPS和/或OSM,IL-6,IL-11,IL-31或LIF中的一种刺激HAoAF和HAoSMC。对细胞上清液进行的ELISA显示,单独用OSM刺激会导致MCP-1,IL-6和VEGF水平升高。当通过qRT-PCR评估时,在HAoAF和HAoSMC中,LPS和OSM联合使用时可协同增加MCP-1,IL-6,VEGF蛋白和mRNA表达,而LPS诱导的IL-8水平则降低。其他gp130细胞因子未观察到这种作用。激活了包括STATs,MAPKinases和NFκB在内的信号通路,LPS诱导了OSM受体链OSMRβ和gp130的稳态mRNA水平。结果表明OSM能够与TLR-4配体协同作用,以诱导HAoAF和HAoSMC促炎反应,支持OSM调节这些细胞有助于动脉粥样硬化发病的观点。

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