稳态朗格汉斯细胞通过I型干扰素和IL-6不依赖的机制诱导Tfh和B细胞应答

A. Bouteau, S. Zurawski, G. Zurawski, B. Igyártó
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摘要

朗格汉斯细胞(LCs)可以在没有危险信号的情况下支持诱导针对外来抗原的抗体反应。这些发现与定义适应性免疫反应如何产生的危险模型相矛盾。破译LCs和其他一些树突状细胞亚群如何在稳态下支持适应性免疫反应,可以更好地理解免疫反应是如何诱导和调节的,并最终开发出更有效的免疫疗法来治疗自身免疫性疾病和传染性疾病。在这里,我们使用一个完善的稳态抗原靶向模型来剖析LCs支持T滤泡辅助(Tfh)细胞和抗体反应的机制。利用骨髓嵌合体、Cre-lox系统和阻断抗体,我们发现IL-6在炎症条件下对Tfh细胞和抗体反应的诱导至关重要,但在稳态下,IL-6在lc诱导的适应性免疫反应中不起作用。在这方面,I型干扰素信号也是必不可少的。然而,我们的初步数据支持稳态lc诱导体液免疫应答依赖于膜结合的共刺激分子,如ICOS/ICOS- l。因此,这些数据表明,在没有炎症的情况下,针对外来抗原的适应性免疫反应是通过一种可能不涉及炎症细胞因子的独特机制产生的。由NIH R01AI146420和托马斯杰斐逊大学启动基金资助。
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Steady-state Langerhans cells induce Tfh and B cell responses through a type I interferon and IL-6 independent mechanism
Langerhans cells (LCs) can support the induction of antibody responses against foreign antigens without a danger signal. These findings contradict the danger model proposed to define how the adaptive immune responses are mounted. Deciphering how LCs, and some other dendritic cell subsets, support adaptive immune responses in steady-state could lead to a better understanding of how immune responses are induced and regulated and, ultimately, to developing more efficient immunotherapeutics for autoimmune- and infectious diseases. Here we used a well-established steady-state antigen targeting model to dissect the mechanism by which LCs support T follicular helper (Tfh) cells and antibody responses. Using bone marrow chimeras, Cre-lox system, and blocking antibodies, we found that IL-6, which is critical in the induction of Tfh cells and antibody responses in inflammatory conditions, played no role in LC-induced adaptive immune responses at steady-state. Type I interferon signaling was also dispensable in this regard. However, our preliminary data support that induction of humoral immune responses by steady-state LCs depends on membrane-bound co-stimulatory molecules, such as ICOS/ICOS-L. Thus, these data suggest that adaptive immune responses against foreign antigens in the absence of inflammation are generated through a distinct mechanism that likely does not involve inflammatory cytokines. Supported by grants from NIH R01AI146420 and Thomas Jefferson University startup funds.
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