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TLR7 signaling exacerbates CNS autoimmunity through downregulation of Foxp3+ Treg cells

机译:TLR7信号使中枢神经系统自身免疫Foxp3 + Treg差别通过对这些基因的细胞

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摘要

The innate Toll-like receptor 7 (TLR7) detects infections by recognizing viral and bacterial single-stranded RNA. In addition to pathogen-derived RNA, immune cells expressing high levels of TLR7, such as B cells and dendritic cells (DCs), can be activated by self-RNA. During myelin-induced experimental autoimmune encephalomyelitis (EAE), an animal model of multiple sclerosis, TLR7 expression is increased within the central nervous system (CNS). To define the contribution of TLR7 to the development of EAE, we evaluated the course of the disease in C57BL/6-Tlr7-deficient mice compared with that in WT mice and found that TLR7-deficient mice had decreased disease severity. This protection was associated with decreased myelin oligodendrocyte glycoprotein-specific T-cell activation by primed DCs, decreased circulating autoantibodies, attenuated inflammation within the CNS, and increased Foxp3+ regulatory T cells in the periphery and in the CNS. In conclusion, we show that TLR7 is involved in the maintenance of autoimmunity in the pathogenesis of EAE.
机译:天生的toll样受体7 (TLR7)检测认识到病毒和细菌感染单链RNA。pathogen-derived RNA,免疫细胞表达高水平的TLR7,如B细胞树突状细胞(dc),可以激活self-RNA。自身免疫性脑脊髓炎(运算单元),一种动物多发性硬化模型,TLR7表达式中枢神经系统内增加(中枢神经系统)。运算单元的开发,我们评估的过程C57BL / 6-Tlr7-deficient小鼠的疾病相比之下,在WT老鼠和发现TLR7-deficient小鼠减少疾病严重性。髓鞘少突细胞减少glycoprotein-specific t细胞激活启动DCs,减少循环自身抗体,减毒在中枢神经系统炎症,和Foxp3 +调节性T细胞的增加周边和中枢神经系统。TLR7参与维护自身免疫发病机制的运算单元。

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