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IL-1α Signaling Is Critical for Leukocyte Recruitment after Pulmonary Aspergillus fumigatus Challenge

机译:IL-1α信号对于烟曲霉挑战后白细胞募集至关重要

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摘要

Aspergillus fumigatus is a mold that causes severe pulmonary infections. Our knowledge of how A. fumigatus growth is controlled in the respiratory tract is developing, but still limited. Alveolar macrophages, lung resident macrophages, and airway epithelial cells constitute the first lines of defense against inhaled A. fumigatus conidia. Subsequently, neutrophils and inflammatory CCR2+ monocytes are recruited to the respiratory tract to prevent fungal growth. However, the mechanism of neutrophil and macrophage recruitment to the respiratory tract after A. fumigatus exposure remains an area of ongoing investigation. Here we show that A. fumigatus pulmonary challenge induces expression of the inflammasome-dependent cytokines IL-1β and IL-18 within the first 12 hours, while IL-1α expression continually increases over at least the first 48 hours. Strikingly, Il1r1-deficient mice are highly susceptible to pulmonary A. fumigatus challenge exemplified by robust fungal proliferation in the lung parenchyma. Enhanced susceptibility of Il1r1-deficient mice correlated with defects in leukocyte recruitment and anti-fungal activity. Importantly, IL-1α rather than IL-1β was crucial for optimal leukocyte recruitment. IL-1α signaling enhanced the production of CXCL1. Moreover, CCR2+ monocytes are required for optimal early IL-1α and CXCL1 expression in the lungs, as selective depletion of these cells resulted in their diminished expression, which in turn regulated the early accumulation of neutrophils in the lung after A. fumigatus challenge. Enhancement of pulmonary neutrophil recruitment and anti-fungal activity by CXCL1 treatment could limit fungal growth in the absence of IL-1α signaling. In contrast to the role of IL-1α in neutrophil recruitment, the inflammasome and IL-1β were only essential for optimal activation of anti-fungal activity of macrophages. As such, Pycard-deficient mice are mildly susceptible to A. fumigatus infection. Taken together, our data reveal central, non-redundant roles for IL-1α and IL-1β in controlling A. fumigatus infection in the murine lung.
机译:烟曲霉是引起严重肺部感染的霉菌。我们对如何在呼吸道中控制烟曲霉生长的知识正在发展,但仍然很有限。肺泡巨噬细胞,肺部巨噬细胞和气道上皮细胞构成了对抗烟曲霉分生孢子的第一道防线。随后,将中性粒细胞和炎性CCR2 +单核细胞募集到呼吸道以防止真菌生长。然而,烟曲霉暴露后嗜中性粒细胞和巨噬细胞募集到呼吸道的机制仍然是一个正在进行研究的领域。在这里,我们显示烟曲霉肺部攻击在最初的12小时内诱导了炎性小体依赖性细胞因子IL-1β和IL-18的表达,而IL-1α的表达至少在最初的48小时内持续增加。令人惊讶的是,Il1r1缺陷型小鼠极易受到肺部烟曲霉侵袭,例如肺实质中强大的真菌增殖。 Il1r1缺陷小鼠的易感性增强与白细胞募集和抗真菌活性的缺陷有关。重要的是,IL-1α而非IL-1β对最佳白细胞募集至关重要。 IL-1α信号传导增强了CXCL1的产生。此外,CCR2 +单核细胞是肺中最佳IL-1α和CXCL1早期表达所必需的,因为这些细胞的选择性耗竭导致其表达减少,进而调节了烟曲霉攻击后肺中性粒细胞的早期积累。 CXCL1处理增强肺中性粒细胞募集和抗真菌活性可能会在没有IL-1α信号传导的情况下限制真菌的生长。与IL-1α在嗜中性粒细胞募集中的作用相反,炎性小体和IL-1β仅对巨噬细胞抗真菌活性的最佳激活至关重要。因此,缺乏Pycard的小鼠对烟曲霉有轻度敏感性。综上所述,我们的数据揭示了IL-1α和IL-1β在控制鼠肺中烟曲霉感染中的重要,非冗余作用。

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