Laboratory of Parasitic Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
J Immunol. 2011 Apr 1;186(7):3977-85. doi: 10.4049/jimmunol.1003588. Epub 2011 Feb 28.
IL-10 is believed to underlie many of the immunologic defects in human visceral leishmaniasis (VL). We have identified CD4(+)CD25(-)Foxp3(-) T cells as the major source of IL-10 in the VL spleen. IL-27, a member of the IL-6/IL-12 cytokine family, has been shown to promote development of IL-10-producing T cells, in part by upregulating their production of autocrine IL-21. We investigated whether IL-27 and IL-21 are associated with human VL. IL-27 was elevated in VL plasma, and at pretreatment, spleen cells showed significantly elevated mRNA levels of both IL-27 subunits, IL-27p28 and EBI-3, as well as IL-21, compared with posttreatment biopsies. CD14(+) spleen cells were the main source of IL-27 mRNA, whereas CD3(+) T cells were the main source of IL-21. IL-27 mRNA could be strongly upregulated in normal donor macrophages with IFN-γ and IL-1β, conditions consistent with those in the VL spleen. Last, a whole-blood assay revealed that most VL patients could produce Ag-specific IFN-γ and IL-10 and that the IL-10 could be augmented with recombinant human IL-21. Thus, proinflammatory cytokines acting on macrophages in the VL spleen have the potential to upregulate IL-27, which in turn can induce IL-21 to expand IL-10-producing T cells as a mechanism of feedback control.
IL-10 被认为是人类内脏利什曼病(VL)许多免疫缺陷的基础。我们已经确定 CD4(+)CD25(-)Foxp3(-)T 细胞是 VL 脾脏中 IL-10 的主要来源。IL-27,IL-6/IL-12 细胞因子家族的一员,已被证明可促进 IL-10 产生 T 细胞的发育,部分是通过上调其自分泌 IL-21 的产生。我们研究了 IL-27 和 IL-21 是否与人类 VL 相关。在 VL 血浆中升高了 IL-27,并且在预处理时,与治疗后活检相比,脾细胞显示出明显升高的两种 IL-27 亚基(IL-27p28 和 EBI-3)以及 IL-21 的 mRNA 水平。CD14(+)脾细胞是 IL-27 mRNA 的主要来源,而 CD3(+)T 细胞是 IL-21 的主要来源。IFN-γ 和 IL-1β 可强烈上调正常供体巨噬细胞中的 IL-27 mRNA,这与 VL 脾脏中的条件一致。最后,全血测定显示,大多数 VL 患者可以产生特异性 Ag IFN-γ 和 IL-10,并且可以用重组人 IL-21 增强 IL-10。因此,作用于 VL 脾脏中巨噬细胞的促炎细胞因子有可能上调 IL-27,反过来又可以诱导 IL-21 来扩增产生 IL-10 的 T 细胞,作为反馈控制的一种机制。
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