真菌货物的性质引起巨噬细胞吞噬的显著不同的时间程序

Q1 Immunology and Microbiology Cell Surface Pub Date : 2022-12-01 DOI:10.1016/j.tcsw.2022.100082
María Fernanda Alonso , Judith M. Bain , Fiona M. Rudkin , Lars P. Erwig , Alistair J.P. Brown , Neil A.R. Gow
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引用次数: 2

摘要

吞噬作用是我们免疫防御真菌病原体的重要组成部分。吞噬细胞迁移、识别、摄取和吞噬溶酶体成熟的动力学差异取决于真菌货物的特征,特别是细胞壁组成和细胞形态的差异。然而,专注于吞噬细胞与单个真菌物种相互作用的研究并没有使这些不同物种之间相互作用的动力学进行比较。因此,我们使用活细胞视频显微镜检查巯基乙酸引发的C57BL/6小鼠腹腔巨噬细胞对一系列真菌货物的吞噬时间动态。同时用白色念珠菌、光秃念珠菌、酿酒酵母菌和新型隐球菌(野生型和荚膜突变体,cap59Δ)的酵母细胞以及烟曲霉和环形毛霉的孢子挑战均匀种群的巨噬细胞,以便从不同的吞噬阶段对标准化的比较相互作用进行量化。真菌细胞摄取速率的差异可达26倍,而诱导吞噬体酸化的时间差异可达29倍。热杀灭或调理真菌靶点以一种特定的方式显著影响相互作用的动力学。真菌和巨噬细胞的杀伤实验进一步揭示了货物特异性吞噬作用的差异和真菌逃避机制的多样性。因此,同时评估巨噬细胞与不同真菌病原体的相互作用,突出了真菌-吞噬细胞相互作用过程中动力学和生长反应的主要差异,这些差异可能影响发病机制和毒力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The nature of the fungal cargo induces significantly different temporal programmes of macrophage phagocytosis

Phagocytosis is an essential component of our immune defence against fungal pathogens. Differences in the dynamics of phagocyte migration, recognition, uptake and phagolysosome maturation are dependent on the characteristics of the fungal cargo, and in particular to differences in cell wall composition and cellular morphology. However, studies that have focused on phagocyte interactions with individual fungal species have not enabled comparisons in the kinetics of these interactions to be made between these different species. We therefore used live cell video microscopy to examine the temporal dynamics of phagocytosis for a range of fungal cargoes by thioglycollate–elicited peritoneal macrophages from C57BL/6 mice. Uniform populations of macrophages were challenged at the same time with yeast cells of Candida albicans, Candida glabrata, Saccharomyces cerevisiae and Cryptococcus neoformans (wild–type and an acapsular mutant, cap59Δ), and spores of Aspergillus fumigatus and Mucor circinelloides to enable standardized comparative interactions to be quantified from different stages of phagocytosis. Differences in the rate of uptake of fungal cells varied by up to 26–fold, whilst differences in time to induce phagosome acidification varied by as much as 29–fold. Heat-killing or opsonizing the fungal targets markedly affected the kinetics of the interaction in a species–specific manner. Fungal and macrophage killing assays further revealed cargo–specific differences in phagocytosis and diversity in fungal evasion mechanisms. Therefore, simultaneous assessment of the interaction of macrophages with different fungal pathogens highlighted major differences in the kinetics and growth responses during fungus–phagocyte interactions that are likely to impact on pathogenesis and virulence.

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来源期刊
Cell Surface
Cell Surface Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
6.10
自引率
0.00%
发文量
18
审稿时长
49 days
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