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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >IL-17-producing invariant NKT cells in lymphoid organs are recent thymic emigrants identified by neuropilin-1 expression.
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IL-17-producing invariant NKT cells in lymphoid organs are recent thymic emigrants identified by neuropilin-1 expression.

机译:淋巴器官中产生IL-17的恒定NKT细胞是通过Neuropilin-1表达鉴定的近期胸腺迁出物。

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Despite increasing knowledge on the mechanisms of invariant natural killer T (iNKT)-cell development in the thymus, the function of recent thymic emigrant (RTE) iNKT cells remains largely unexplored, principally because of a lack of bona fide markers to distinguish RTE from long-lived iNKT cells. Whether the recently described IL-17-producing iNKT cell subset is part of RTE has notably not been addressed. In the present study, we show that neuropilin-1 (Nrp-1), a transmembrane receptor mainly found on T-regulatory (Treg) cells in the murine immune system, is specifically expressed on RTE iNKT cells in naive mice. We used the Nrp-1 marker to discriminate RTE from mature iNKT cells and compare their functions. We show that RTE iNKT cells proliferate more than mature iNKT cells after in vitro activation; that, unlike mature iNKT cells, most RTE iNKT cells fail to rapidly produce IFN-gamma and IL-4 after in vivo activation; and, most importantly, that IL-17-producing iNKT cells in lymphoid organs of naive mice are contained within the RTE iNKT cell pool. Our results establish an accurate marker of RTE iNKT cells and reveal that continuous thymic output is required for pro-inflammatory IL-17 secretion, a key function of adult iNKT cells.
机译:尽管人们对胸腺中不变的自然杀伤T(iNKT)细胞发育机制的认识有所增加,但最近的胸腺移出(RTE)iNKT细胞的功能仍未得到充分开发,这主要是因为缺乏真正的标记来区分RTE与长期活的iNKT细胞。最近还没有解决最近描述的产生IL-17的iNKT细胞亚群是否是RTE的问题。在本研究中,我们表明,在幼鼠的RTE iNKT细胞上特异性表达了主要在鼠免疫系统T调节(Treg)细胞上发现的跨膜受体Neuropilin-1(Nrp-1)。我们使用Nrp-1标记从成熟的iNKT细胞中区分RTE,并比较它们的功能。我们显示,在体外激活后,RTE iNKT细胞比成熟的iNKT细胞增殖更多。与成熟的iNKT细胞不同,大多数RTE iNKT细胞在体内激活后不能迅速产生IFN-γ和IL-4。最重要的是,RTE iNKT细胞库中包含幼稚小鼠淋巴器官中产生IL-17的iNKT细胞。我们的结果建立了RTE iNKT细胞的准确标记,并揭示了持续的胸腺输出对于促炎性IL-17分泌是成年iNKT细胞的一项关键功能。

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