Max von Pettenkofer-Institut für Hygiene und Medizinische Mikrobiologie, Medizinische Fakultät, LMU München, Munich, Germany.
Institut für Hygiene und Mikrobiologie, Julius-Maximilians-Universität Würzburg, Würzburg, Germany.
Front Cell Infect Microbiol. 2018 May 14;8:128. doi: 10.3389/fcimb.2018.00128. eCollection 2018.
The host's defense against invasive mold infections relies on diverse antimicrobial activities of innate immune cells. However, studying these mechanisms is complicated by the filamentous nature of such pathogens that typically form long, branched, multinucleated and compartmentalized hyphae. Here we describe a novel method that allows for the visualization and quantification of the antifungal killing activity exerted by human granulocytes against hyphae of the opportunistic pathogen . The approach relies on the distinct impact of fungal cell death on the morphology of mitochondria that were visualized with green fluorescent protein (GFP). We show that oxidative stress induces complete fragmentation of the tubular mitochondrial network which correlates with cell death of affected hyphae. Live cell microscopy revealed a similar and non-reversible disruption of the mitochondrial morphology followed by fading of fluorescence in hyphae that were killed by human granulocytes. Quantitative microscopic analysis of fixed samples was subsequently used to estimate the antifungal activity. By utilizing this assay, we demonstrate that lipopolysaccharides as well as human serum significantly increase the killing efficacy of the granulocytes. Our results demonstrate that evaluation of the mitochondrial morphology can be utilized to assess the fungicidal activity of granulocytes against hyphae.
宿主抵御侵袭性霉菌感染依赖于固有免疫细胞的多种抗菌活性。然而,由于这些病原体呈丝状,通常形成长而分支的多核和分隔的菌丝,因此研究这些机制变得复杂。在这里,我们描述了一种新方法,可用于可视化和量化人体粒细胞对机会性病原体 的菌丝的抗真菌杀伤活性。该方法依赖于真菌细胞死亡对线粒体形态的明显影响,线粒体形态用绿色荧光蛋白 (GFP) 进行可视化。我们表明,氧化应激诱导管状线粒体网络的完全碎片化,这与受影响的菌丝的细胞死亡相关。活细胞显微镜显示,受影响的菌丝在被人类粒细胞杀死后,线粒体形态也会发生类似的不可逆破坏,荧光逐渐消失。随后对固定样本进行定量显微镜分析以估计抗真菌活性。通过利用该测定法,我们证明脂多糖和人血清显著提高了粒细胞的杀伤效力。我们的结果表明,评估线粒体形态可用于评估粒细胞对 的菌丝的杀菌活性。