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Fungal Iron Availability during Deep Seated Candidiasis Is Defined by a Complex Interplay Involving Systemic and Local Events

机译:深层念珠菌病期间真菌铁的可用性由涉及系统和局部事件的复杂相互作用定义

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摘要

Nutritional immunity – the withholding of nutrients by the host – has long been recognised as an important factor that shapes bacterial-host interactions. However, the dynamics of nutrient availability within local host niches during fungal infection are poorly defined. We have combined laser ablation-inductively coupled plasma mass spectrometry (LA-ICP MS), MALDI imaging and immunohistochemistry with microtranscriptomics to examine iron homeostasis in the host and pathogen in the murine model of systemic candidiasis. Dramatic changes in the renal iron landscape occur during disease progression. The infection perturbs global iron homeostasis in the host leading to iron accumulation in the renal medulla. Paradoxically, this is accompanied by nutritional immunity in the renal cortex as iron exclusion zones emerge locally around fungal lesions. These exclusion zones correlate with immune infiltrates and haem oxygenase 1-expressing host cells. This local nutritional immunity decreases iron availability, leading to a switch in iron acquisition mechanisms within mature fungal lesions, as revealed by laser capture microdissection and qRT-PCR analyses. Therefore, a complex interplay of systemic and local events influences iron homeostasis and pathogen-host dynamics during disease progression.
机译:营养免疫力-宿主对养分的滞留-长期以来一直被认为是影响细菌与宿主相互作用的重要因素。然而,在真菌感染期间局部宿主壁ches内养分利用率的动态性尚不明确。我们将激光烧蚀-电感耦合等离子体质谱(LA-ICP MS),MALDI成像和免疫组化与微转录组学相结合,以检查系统性念珠菌病鼠模型中宿主体内的铁稳态和病原体。在疾病进展期间,肾铁景观发生了巨大变化。感染会干扰宿主体内的整体铁稳态,从而导致铁在肾髓质中蓄积。矛盾的是,这伴随着肾脏皮层的营养免疫,因为在真菌病变周围局部出现了铁排斥区。这些排斥区与免疫浸润和表达血红素加氧酶1的宿主细胞相关。激光捕获显微切割和qRT-PCR分析表明,这种局部营养免疫力降低了铁的利用率,导致成熟真菌病灶内铁的获取机制发生了变化。因此,在疾病发展过程中,系统性事件和局部事件的复杂相互作用会影响铁稳态和病原体宿主动态。

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