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用 IL-7、IL-2 和 IL-1beta 扩增人 NK-22 细胞揭示了内在的功能可塑性。

Expansion of human NK-22 cells with IL-7, IL-2, and IL-1beta reveals intrinsic functional plasticity.

机构信息

Department of Pathology and Immunology, Washington University School of Medicine, St Louis, MO 63110, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Jun 15;107(24):10961-6. doi: 10.1073/pnas.1005641107. Epub 2010 Jun 1.

Abstract

Natural killer-22 (NK-22) cells are a human NK cell subset situated in mucosal-associated lymphoid tissues that specialize in IL-22 secretion in response to IL-23. Here we investigated the cytokine requirements for NK-22 cell expansion. IL-7 maintained the survival of NK-22 cells and IL-22 production in response to IL-23 but was insufficient to induce robust expansion. Proliferation of NK-22 cells was increased markedly by adding either IL-1beta or IL-2 to IL-7 and was even stronger in the presence of IL-1beta plus IL-2. In contrast to IL-7, continuous culture in IL-1beta and IL-2 modified NK-22 cytokine profiles. IL-1beta promoted constitutive IL-22 secretion rather than acute IL-22 production in response to IL-23 and induced IL-17 in some cells. IL-2 reduced secretion of IL-22 and IL-17, increasing production of IFN-gamma and leukemia inhibitory factor. Functional deviation toward IFN-gamma production also was induced by continuous culture in IL-23. These results demonstrate the functional plasticity of NK-22 cells, which may allow flexible responses to different pathogens. Finally, we found that NK-22 cells released the B-cell survival factor, B-cell activating factor belonging to the TNF family (BAFF), suggesting a potential role of NK-22 cells in promoting B-cell-mediated mucosal immunity.

摘要

自然杀伤细胞 22 (NK-22) 是位于黏膜相关淋巴组织中的人类 NK 细胞亚群,其特点是在受到 IL-23 刺激时专门分泌 IL-22。在这里,我们研究了 NK-22 细胞扩增的细胞因子需求。IL-7 维持 NK-22 细胞的存活和对 IL-23 的 IL-22 产生,但不足以诱导强烈的扩增。添加 IL-1β或 IL-2 到 IL-7 中可显著增加 NK-22 细胞的增殖,并且在存在 IL-1β加 IL-2 的情况下更强。与 IL-7 相反,在 IL-1β和 IL-2 中连续培养会改变 NK-22 细胞因子谱。IL-1β促进 IL-22 的组成型分泌,而不是对 IL-23 的急性 IL-22 产生,并在某些细胞中诱导 IL-17。IL-2 减少了 IL-22 和 IL-17 的分泌,增加了 IFN-γ和白血病抑制因子的产生。在 IL-23 中连续培养也会诱导向 IFN-γ产生的功能偏差。这些结果表明 NK-22 细胞具有功能可塑性,这可能允许对不同病原体做出灵活的反应。最后,我们发现 NK-22 细胞释放了 B 细胞存活因子,即 TNF 家族的 B 细胞激活因子(BAFF),这表明 NK-22 细胞在促进 B 细胞介导的黏膜免疫中可能具有潜在作用。

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