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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >In vivo polarization of IFN-gamma at Kupfer and non-Kupfer immunological synapses during the clearance of virally infected brain cells.
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In vivo polarization of IFN-gamma at Kupfer and non-Kupfer immunological synapses during the clearance of virally infected brain cells.

机译:在清除被病毒感染的脑细胞期间,Kupfer和非Kupfer免疫突触处的IFN-γ体内极化。

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摘要

Kupfer-type immunological synapses are thought to mediate intercellular communication between antiviral T cells and virally infected target Ag-presenting brain cells in vivo during an antiviral brain immune response. This hypothesis predicts that formation of Kupfer-type immunological synapses is necessary for polarized distribution of effector molecules, and their directed secretion toward the target cells. However, no studies have been published testing the hypothesis that cytokines can only form polarized clusters at Kupfer-type immunological synapses. Here, we show that IFN-gamma and granzyme-B cluster in a polarized fashion at contacts between T cells and infected astrocytes in vivo. In some cases these clusters were found in Kupfer-type immunological synapses between T cells and infected astrocytes, but we also detected polarized IFN-gamma at synaptic immunological contacts which did not form Kupfer-type immunological synaptic junctions, i.e., in the absence of polarization of TCR or LFA-1. This indicates that TCR signaling, which leads to the production, polarization, and eventual directed secretion of effector molecules such as IFN-gamma, occurs following the formation of both Kupfer-type and non-Kupfer type immunological synaptic junctions between T cells and virally infected target astrocytes in vivo.
机译:据认为,Kupfer型免疫突触可在抗病毒性脑免疫应答过程中介导体内抗病毒T细胞与病毒感染的靶抗原呈递脑细胞之间的细胞间通讯。该假设预测,形成Kupfer型免疫突触对于效应分子的极化分布及其向靶细胞的定向分泌是必需的。但是,尚未发表研究来检验细胞因子只能在Kupfer型免疫突触形成极化簇的假说。在这里,我们显示在体内T细胞与感染的星形胶质细胞之间的接触中,IFN-γ和粒酶B以极化的方式聚集。在某些情况下,这些簇在T细胞和感染的星形胶质细胞之间的库普弗型免疫突触中被发现,但我们还在突触免疫接触处检测到极化的IFN-γ,而这种接触并不形成库普弗型免疫突触连接,即在没有极化的情况下TCR或LFA-1。这表明TCR信号传导会导致T细胞与病毒感染的Kupfer型和非Kupfer型免疫突触连接的形成,从而导致效应分子(如IFN-γ)的产生,极化和最终定向分泌。在体内靶向星形胶质细胞。

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