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Particulate matter induces inflammatory cytokine production via activation of NFκB by TLR5-NOX4-ROS signaling in human skin keratinocyte and mouse skin

机译:颗粒物质通过人皮肤角质形成细胞和小鼠皮肤中的TLR5-NOX4-ROS信号转导激活NFκB诱导炎症性细胞因子的产生

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摘要

Particulate matter (PM) increases levels of pro-inflammatory cytokines, but its effects on the skin remain largely unknown. We investigated the signal transduction pathway and epigenetic regulatory mechanisms underlying cellular inflammation induced by PM with a diameter of ≤ 2.5 (PM2.5) in vitro and in vivo. PM2.5-treated skin keratinocytes produced various inflammatory cytokines, including IL-6. The binding of PM2.5 to TLR5 initiated intracellular signaling through MyD88, and led to the translocation of NFκB to the nucleus, where it bound the NFκB site within IL-6 promoter. Furthermore, PM2.5 induced a direct interaction between TLR5 and NOX4, and in turn induced the production of ROS and activated NFκB-IL-6 downstream, which was prevented by siRNA-mediated knockdown of NOX4 or antioxidant treatment. Furthermore, expression of TLR5, MyD88, NOX4, phospho-NFκB, and IL-6 was increased in skin tissue of PM2.5-treated flaky tail mice. PM2.5-induced increased transcription of IL-6 was regulated via DNA methylation and histone methylation by epigenetic modification; the binding of DNA demethylase and histone methyltransferase to the IL-6 promoter regions resulted in increased IL-6 mRNA expression. Our findings provide deep insight into the pathogenesis of PM2.5 exposure and can be used as a therapeutic strategy to treat inflammatory skin diseases caused by PM2.5 exposure.
机译:颗粒物(PM)会增加促炎细胞因子的水平,但其对皮肤的影响仍然未知。我们在体外和体内研究了直径≤2.5(PM2.5)的PM引起的细胞炎症的信号转导途径和表观遗传调控机制。 PM2.5处理的皮肤角质形成细胞产生各种炎症细胞因子,包括IL-6。 PM2.5与TLR5的结合通过MyD88启动细胞内信号传导,并导致NFκB易位至细胞核,并与IL-6启动子中的NFκB位点结合。此外,PM2.5诱导了TLR5与NOX4之间的直接相互作用,进而诱导了ROS的产生和下游的活化NFκB-IL-6的产生,这可以通过siRNA介导的NOX4的敲除或抗氧化剂处理来防止。此外,在经PM2.5处理的片状尾巴小鼠的皮肤组织中,TLR5,MyD88,NOX4,磷酸化NFκB和IL-6的表达增加。 PM2.5诱导的IL-6转录增加是通过DNA甲基化和表观遗传修饰的组蛋白甲基化来调节的。 DNA脱甲基酶和组蛋白甲基转移酶与IL-6启动子区域的结合导致IL-6 mRNA表达增加。我们的发现为PM2.5暴露的发病机理提供了深刻的见解,可以用作治疗由PM2.5暴露引起的炎症性皮肤病的治疗策略。

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