Department of Medical Microbiology and Immunology, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.
Microbiology Doctoral Training Program, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.
PLoS Pathog. 2018 Aug 2;14(8):e1007229. doi: 10.1371/journal.ppat.1007229. eCollection 2018 Aug.
In immunocompromised individuals, Aspergillus fumigatus causes invasive fungal disease that is often difficult to treat. Exactly how immune mechanisms control A. fumigatus in immunocompetent individuals remains unclear. Here, we use transparent zebrafish larvae to visualize and quantify neutrophil and macrophage behaviors in response to different A. fumigatus strains. We find that macrophages form dense clusters around spores, establishing a protective niche for fungal survival. Macrophages exert these protective effects by inhibiting fungal germination, thereby inhibiting subsequent neutrophil recruitment and neutrophil-mediated killing. Germination directly drives fungal clearance as faster-growing CEA10-derived strains are killed better in vivo than slower-growing Af293-derived strains. Additionally, a CEA10 pyrG-deficient strain with impaired germination is cleared less effectively by neutrophils. Host inflammatory activation through Myd88 is required for killing of a CEA10-derived strain but not sufficient for killing of an Af293-derived strain, further demonstrating the role of fungal-intrinsic differences in the ability of a host to clear an infection. Altogether, we describe a new role for macrophages in the persistence of A. fumigatus and highlight the ability of different A. fumigatus strains to adopt diverse modes of virulence.
在免疫功能低下的个体中,烟曲霉会引起侵袭性真菌感染,而这种感染往往难以治疗。确切地说,免疫机制如何在免疫功能正常的个体中控制烟曲霉仍然不清楚。在这里,我们使用透明的斑马鱼幼虫来可视化和量化中性粒细胞和巨噬细胞对不同烟曲霉菌株的反应。我们发现,巨噬细胞在孢子周围形成密集的簇,为真菌的生存建立了一个保护性小生境。巨噬细胞通过抑制真菌的萌发来发挥这些保护作用,从而抑制随后的中性粒细胞募集和中性粒细胞介导的杀伤。萌发直接驱动真菌的清除,因为生长更快的 CEA10 衍生菌株比生长较慢的 Af293 衍生菌株在体内被更好地清除。此外,萌发受损的 CEA10 pyrG 缺陷菌株被中性粒细胞清除的效果较差。通过 Myd88 介导的宿主炎症激活对于杀灭 CEA10 衍生菌株是必需的,但不足以杀灭 Af293 衍生菌株,这进一步证明了真菌内在差异在宿主清除感染能力中的作用。总的来说,我们描述了巨噬细胞在烟曲霉持续存在中的一个新作用,并强调了不同烟曲霉菌株采用不同毒力模式的能力。