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IFN-γ Negatively Regulates CpG-Induced IL-10 in Bone Marrow-Derived Dendritic Cells

机译:IFN-γ负调节骨髓衍生树突状细胞中CpG诱导的IL-10。

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Dendritic cells (DCs) are important players in the regulation of Th1- and Th2-dominated immune responses. In these studies we showed that IFN-γ, the key mediator of Th1 immunity, actively suppressed the production of IL-10 in murine DCs when activated with LPS or CpG. Our analysis revealed that both LPS and CpG induced IL-10 and IL-12 production but that the presence of IFN-γ, in a dose-dependent manner, suppressed the production of IL-10 while enhancing that of IL-12. The observed inhibition of IL-10 production was independent of IL-12. Experiments performed with STAT-1 knockout mice demonstrated that the primary production of IL-12 induced by CpG was STAT-1 dependent, whereas the production of IL-10 was not. This finding was confirmed by the observation that CpG-induced IL-12 production could be inhibited by anti-IFN-β Abs, whereas CpG-induced IL-10 production could not be inhibited. These data also demonstrated that the inhibitory effect of IFN-γ on IL-10 expression was STAT-1 dependent and transcriptionally regulated. Thus, DCs respond to CpG by producing proinflammatory and anti-inflammatory cytokines such as IL-12 and IL-10, respectively, and IFN-γ acts to not only enhance IL-12 but also to inhibit IL-10 production. The current data demonstrate a novel pathway for IFN-γ-mediated immunoregulation and suggest that IFN-γ-dependent suppression of IL-10 production by DCs may be involved in the antagonism between Th1 and Th2 patterns of immune reactivity.
机译:树突状细胞(DC)是调节Th1和Th2为主的免疫反应的重要参与者。在这些研究中,我们证明了Th1免疫的关键介质IFN-γ在被LPS或CpG激活时能积极抑制鼠DC中IL-10的产生。我们的分析表明,LPS和CpG均可诱导IL-10和IL-12的产生,但IFN-γ的存在以剂量依赖性方式抑制了IL-10的产生,同时增强了IL-12的产生。观察到的对IL-10产生的抑制独立于IL-12。用STAT-1基因敲除小鼠进行的实验表明,CpG诱导的IL-12的主要产生是STAT-1依赖性的,而IL-10的产生则不是。观察结果证实了这一发现,即抗IFN-βAbs可以抑制CpG诱导的IL-12产生,而CpG诱导的IL-10产生却不能被抑制。这些数据还证明了IFN-γ对IL-10表达的抑制作用是STAT-1依赖性的并且是转录调控的。因此,DC通过分别产生促炎和抗炎细胞因子例如IL-12和IL-10而对CpG作出反应,并且IFN-γ不仅起到增强IL-12的作用,而且还抑制IL-10的产生。当前数据证明了IFN-γ介导的免疫调节的新途径,并表明DC对IFN-γ的IL-10产生的依赖性抑制可能与Th1和Th2免疫反应性模式之间的拮抗作用有关。

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