首页> 外文期刊>Blood: The Journal of the American Society of Hematology >IL-17-producing human peripheral regulatory T cells retain suppressive function.
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IL-17-producing human peripheral regulatory T cells retain suppressive function.

机译:产生IL-17的人外周调节性T细胞保持抑制功能。

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摘要

Although implicated in antagonistic functions, both regulatory T cells (Tregs) and Th17 effector cells play an important role in controlling autoimmune pathogenesis. Paradoxically, recent studies indicate that Tregs have the capacity to produce interleukin-17 (IL-17), although the ability of these cells to retain their suppressive function remains unknown. Here we report that human Tregs within the CD4(+)CD45RA(-)CD25(high)CCR6(+)HLA-DR(-)FoxP3(+) population produce IL-17 when activated in the presence of the proinflammatory cytokines IL-1beta and IL-6, whereas IL-17 secretion was inhibited by TGFbeta. To assess the ability of a single Treg to secrete IL-17 and to suppress in vitro immune function, we isolated clones from this population. We found that IL-17(+)/FoxP3(+) Treg clones retain suppressive function and exhibit the plasticity to secrete IL-17 or suppress depending on the nature of the stimulus provided. IL-17 production by these Treg clones was accompanied by sustained FoxP3 expression and concomitant, but reversible, loss of suppressive activity. Our data demonstrate that at the single cell level a subset of in vitro suppressive FoxP3(+) cells can be driven to secrete IL-17 under inflammatory conditions. These findings suggest a new mechanism by which inflammation can drive Tregs to secrete IL-17, thereby dampening suppression and promoting an inflammatory milieu.
机译:尽管与拮抗功能有关,但调节性T细胞(Tregs)和Th17效应细胞在控制自身免疫性发病机理中均起着重要作用。矛盾的是,最近的研究表明,Tregs具有产生白介素17(IL-17)的能力,尽管这些细胞保持其抑制功能的能力仍然未知。在这里,我们报道CD4(+)CD45RA(-)CD25(high)CCR6(+)HLA-DR(-)FoxP3(+)人群中的人类Tregs在促炎性细胞因子IL-存在时被激活后产生IL-17。 TGFbeta抑制1beta和IL-6,而IL-17分泌受到抑制。为了评估单个Treg分泌IL-17和抑制体外免疫功能的能力,我们从该群体中分离了克隆。我们发现,IL-17(+)/ FoxP3(+)Treg克隆保留抑制功能,并表现出可分泌IL-17或可抑制的可塑性,具体取决于所提供刺激的性质。这些Treg克隆产生的IL-17伴随持续的FoxP3表达和抑制活性的丧失,但可逆。我们的数据表明,在炎性条件下,单细胞水平的体外抑制性FoxP3(+)细胞子集可被驱动分泌IL-17。这些发现表明,炎症可以驱动Tregs分泌IL-17,从而抑制抑制并促进炎症环境的新机制。

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