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Regulation of the balance of cytokine production and the signal transducer and activator of transcription (STAT) transcription factor activity by cytokines and inflammatory synovial fluids

机译:细胞因子和炎性滑液对细胞因子产生与信号转导和转录激活因子(STAT)转录因子活性平衡的调节

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摘要

The balance between type 1 and 2 T helper cell cytokine production plays an important role in several animal models of autoimmunity, and skewed patterns of cytokine expression have been described in human inflammatory diseases. Many cytokines activate signal transducer and activation of transcription (STAT) transcription factors, which, in turn, activate transcription of inflammatory effector genes. We used mononuclear cell priming cultures and inflammatory synovial fluids (SFs) derived from arthritis patients to examine the regulation of cytokine production and STAT activity by an inflammatory synovial microenvironment. Exposure to SFs during priming resulted in an 81% inhibition of interferon (IFN)-gamma, but not interleukin (IL) 4, production by effector cells generated in priming cultures. SF suppression was mediated by IL-4 and IL-10 and inhibition of IL-12 expression, and it was reversed in a dominant fashion by exogenous IL- 12. SFs blocked the sustained activity of transcription factor Stat1, but not Stat3, during the priming period, and Stat1 activity was differentially regulated by cytokines in parallel with their positive or negative regulation of IFN-gamma production. Active Stat3, but not Stat1, was detected in cells from inflamed joints. These results suggest a role for altered balance of Stat1 and Stat3 transcriptional activity in the regulation of T cell differentiation and in the pathogenesis of inflammatory synovitis.
机译:1型和2型T辅助细胞细胞因子产生之间的平衡在几种自身免疫动物模型中起着重要作用,并且在人类炎症性疾病中已经描述了细胞因子表达的偏态。许多细胞因子激活信号转导子并激活转录(STAT)转录因子,进而激活炎症效应基因的转录。我们使用源自关节炎患者的单核细胞引发培养物和炎性滑液(SFs)来检查炎性滑膜微环境对细胞因子产生和STAT活性的调节。初免期间暴露于SFs会导致81%的干扰素(IFN)-γ抑制,但不会抑制白介素(IL)4的抑制,这些干扰是由初免培养物中产生的效应细胞产生的。 SF抑制作用是由IL-4和IL-10介导,并抑制IL-12表达,外源性IL-12以显性方式逆转。激活期,而Stat1活性受细胞因子与其阳性或阴性调节IFN-γ产生的差异性调节。在发炎关节的细胞中检测到活性Stat3,但未检测到Stat1。这些结果表明,在调节T细胞分化和炎性滑膜炎的发病过程中,Stat1和Stat3转录活性的平衡改变具有重要作用。

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