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白细胞介素-22 定义了一种新型的抗真菌耐药免疫途径。

IL-22 defines a novel immune pathway of antifungal resistance.

机构信息

Department of Experimental Medicine and Biochemical Sciences, University of Perugia, Perugia, Italy.

出版信息

Mucosal Immunol. 2010 Jul;3(4):361-73. doi: 10.1038/mi.2010.22. Epub 2010 May 5.

Abstract

The role of IL-17 and Th17 cells in immunity vs. pathology associated with the human commensal Candida albicans remains controversial. Both positive and negative effects on immune resistance have been attributed to IL-17/Th17 in experimental candidiasis. In this study, we provide evidence that IL-22, which is also produced by Th17 cells, has a critical, first-line defense in candidiasis by controlling the growth of infecting yeasts as well as by contributing to the host's epithelial integrity in the absence of acquired Th1-type immunity. The two pathways are reciprocally regulated, and IL-22 is upregulated under Th1 deficiency conditions and vice versa. Whereas both IL-17A and F are dispensable for antifungal resistance, IL-22 mediates protection in IL-17RA-deficient mice, in which IL-17A contributes to disease susceptibility. Thus, our findings suggest that protective immunity to candidiasis is made up of a staged response involving an early, IL-22-dominated response followed by Th1/Treg reactivity that will prevent fungal dissemination and supply memory.

摘要

IL-17 和 Th17 细胞在人类共生念珠菌相关的免疫与病理学中的作用仍然存在争议。在实验性念珠菌病中,IL-17/Th17 被归因于具有正向和负向的免疫抵抗作用。在这项研究中,我们提供了证据表明,同样由 Th17 细胞产生的 IL-22 通过控制感染酵母的生长以及在缺乏获得性 Th1 型免疫的情况下促进宿主上皮完整性,在念珠菌病中具有关键的一线防御作用。这两个途径是相互调节的,IL-22 在 Th1 缺乏条件下上调,反之亦然。虽然 IL-17A 和 F 对于抗真菌抵抗都是可有可无的,但 IL-22 在 IL-17RA 缺陷小鼠中介导保护作用,其中 IL-17A 有助于疾病易感性。因此,我们的研究结果表明,对念珠菌病的保护性免疫由一个分阶段的反应组成,涉及一个早期、以 IL-22 为主的反应,随后是 Th1/Treg 反应,这将防止真菌传播并提供记忆。

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