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通过与土壤变形虫的相互作用探索丝状真菌病原体的毒力决定因素。

Exploring Virulence Determinants of Filamentous Fungal Pathogens through Interactions with Soil Amoebae.

机构信息

Evolution of Microbial Interactions, Leibniz Institute for Natural Product Research and Infection Biology-Hans Knöll Institute, Jena, Germany.

Institute of Microbiology, Friedrich Schiller University Jena, Jena, Germany.

出版信息

Front Cell Infect Microbiol. 2017 Dec 5;7:497. doi: 10.3389/fcimb.2017.00497. eCollection 2017.

Abstract

Infections with filamentous fungi are common to all animals, but attention is rising especially due to the increasing incidence and high mortality rates observed in immunocompromised human individuals. Here, and other members of its genus are the leading causative agents. Attributes like their saprophytic life-style in various ecological niches coupled with nutritional flexibility and a broad host range have fostered the hypothesis that environmental predators could have been the actual target for some of their virulence determinants. In this mini review, we have merged the recent findings focused on the potential dual-use of fungal defense strategies against innate immune cells and soil amoebae as natural phagocytes. Well-established virulence attributes like the melanized surface of fungal conidia or their capacity to produce toxic secondary metabolites have also been found to be protective against the model amoeba . Some of the recent advances during interaction studies with human cells have further promoted the adaptation of other amoeba infection models, including the wide-spread generalist , or less prominent representatives like . We further highlight prospects and limits of these natural phagocyte models with regard to the infection biology of filamentous fungi and in comparison to the phagocytes of the innate immune system.

摘要

所有动物都容易感染丝状真菌,但由于免疫功能低下的人类个体中观察到发病率和死亡率不断上升,人们对其关注度日益提高。这里提到的 和该属的其他成员是主要的病原体。它们在各种生态位中腐生的生活方式、营养灵活性和广泛的宿主范围等特性,使人们产生了这样一种假设,即环境捕食者可能是它们一些毒力决定因素的实际目标。在这篇迷你综述中,我们融合了最近的研究结果,这些研究结果集中在真菌防御策略对先天免疫细胞和土壤变形虫(天然吞噬细胞)的潜在双重用途上。已经发现一些成熟的毒力特性,如真菌分生孢子的黑化表面或它们产生有毒次生代谢物的能力,对模式变形虫 具有保护作用。在与人类细胞相互作用的研究中取得的一些最新进展,进一步促进了其他变形虫感染模型的适应,包括广泛存在的多面手 ,或不太突出的代表,如 。我们进一步强调了这些天然吞噬细胞模型在丝状真菌感染生物学方面的前景和局限性,并与先天免疫系统的吞噬细胞进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4894/5723301/5f13f2397933/fcimb-07-00497-g0001.jpg

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