Trautwein-Weidner K, Gladiator A, Nur S, Diethelm P, LeibundGut-Landmann S
Institute of Microbiology, ETH Zürich, Zürich, Switzerland.
Mucosal Immunol. 2015 Mar;8(2):221-31. doi: 10.1038/mi.2014.57. Epub 2014 Jul 9.
Interleukin-17 (IL-17)-mediated immunity has emerged as a crucial host defense mechanism against Candida albicans infections in mucosal tissues and the skin. The precise mechanism by which the IL-17 pathway prevents fungal outgrowth has not been clarified. Neutrophils are critical for limiting fungal dissemination and IL-17 is generally thought to act by regulating neutrophil mobilization and trafficking to the site of infection. Using a mouse model of oropharyngeal candidiasis (OPC), we found that strikingly the IL-17 pathway is not required for the neutrophil response to C. albicans. Mice deficient for the IL-17 receptor subunits IL-17 receptor A (IL-17RA) or IL-17RC or mice depleted of IL-17A and IL-17F exhibited a normal granulocyte colony-stimulating factor (G-CSF) and CXC-chemokine response and displayed no defect in neutrophil recruitment or function. Instead, the inability of these mice to clear the fungus was associated with a selective defect in the induction of antimicrobial peptides (AMPs) in the epithelium that resulted in persistent fungal colonization. Importantly, this antifungal mechanism of IL-17A and IL-17F did not extend to the closely related family member IL-17C. Together, these data uncouple IL-17-dependent effector mechanisms from the neutrophil response and reveal a compartmentalization of the antifungal defense in the oral mucosa providing a new understanding of IL-17-mediated mucosal immunity against C. albicans.
白细胞介素-17(IL-17)介导的免疫已成为黏膜组织和皮肤抵御白色念珠菌感染的关键宿主防御机制。IL-17通路阻止真菌生长的确切机制尚未阐明。中性粒细胞对于限制真菌扩散至关重要,IL-17通常被认为通过调节中性粒细胞向感染部位的动员和运输来发挥作用。利用口腔念珠菌病(OPC)小鼠模型,我们发现令人惊讶的是,中性粒细胞对白色念珠菌的反应并不需要IL-17通路。缺乏IL-17受体亚基IL-17受体A(IL-17RA)或IL-17RC的小鼠,或耗尽IL-17A和IL-17F的小鼠,表现出正常的粒细胞集落刺激因子(G-CSF)和CXC趋化因子反应,中性粒细胞募集或功能无缺陷。相反,这些小鼠无法清除真菌与上皮细胞中抗菌肽(AMP)诱导的选择性缺陷有关,这导致真菌持续定植。重要的是,IL-17A和IL-17F的这种抗真菌机制并不适用于密切相关的家族成员IL-17C。总之,这些数据将IL-17依赖性效应机制与中性粒细胞反应分离开来,并揭示了口腔黏膜抗真菌防御的区室化,为IL-17介导的针对白色念珠菌的黏膜免疫提供了新的认识。