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Eosinophils Are Important for Protection Immunoregulation and Pathology during Infection with Nematode Microfilariae

机译:嗜酸性粒细胞对于线虫微丝虫感染期间的保护免疫调节和病理很重要

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摘要

Eosinophil responses typify both allergic and parasitic helminth disease. In helminthic disease, the role of eosinophils can be both protective in immune responses and destructive in pathological responses. To investigate whether eosinophils are involved in both protection and pathology during filarial nematode infection, we explored the role of eosinophils and their granule proteins, eosinophil peroxidase (EPO) and major basic protein-1 (MBP-1), during infection with Brugia malayi microfilariae. Using eosinophil-deficient mice (PHIL), we further clarify the role of eosinophils in clearance of microfilariae during primary, but not challenge infection in vivo. Deletion of EPO or MBP-1 alone was insufficient to abrogate parasite clearance suggesting that either these molecules are redundant or eosinophils act indirectly in parasite clearance via augmentation of other protective responses. Absence of eosinophils increased mast cell recruitment, but not other cell types, into the broncho-alveolar lavage fluid during challenge infection. In addition absence of eosinophils or EPO alone, augmented parasite-induced IgE responses, as measured by ELISA, demonstrating that eosinophils are involved in regulation of IgE. Whole body plethysmography indicated that nematode-induced changes in airway physiology were reduced in challenge infection in the absence of eosinophils and also during primary infection in the absence of EPO alone. However lack of eosinophils or MBP-1 actually increased goblet cell mucus production. We did not find any major differences in cytokine responses in the absence of eosinophils, EPO or MBP-1. These results reveal that eosinophils actively participate in regulation of IgE and goblet cell mucus production via granule secretion during nematode-induced pathology and highlight their importance both as effector cells, as damage-inducing cells and as supervisory cells that shape both innate and adaptive immunity.
机译:嗜酸性粒细胞反应代表了过敏性和寄生虫性蠕虫病。在蠕虫病中,嗜酸性粒细胞在免疫反应中起保护作用,在病理反应中起破坏作用。为了调查在丝虫线虫感染过程中嗜酸性粒细胞是否同时参与保护和病理,我们探讨了嗜酸性粒细胞及其颗粒蛋白,嗜酸性粒细胞过氧化物酶(EPO)和主要碱性蛋白-1(MBP-1)在马来布鲁氏微丝虫感染期间的作用。 。使用嗜酸性粒细胞缺乏的小鼠(PHIL),我们进一步阐明了嗜酸性粒细胞在原发性微丝aria清除中的作用,但并不挑战体内感染。单独删除EPO或MBP-1不足以消除寄生虫清除,这表明这些分子是多余的,或嗜酸性粒细胞通过增强其他保护性反应间接在寄生虫清除中起作用。缺乏嗜酸性粒细胞会在激发感染期间增加肥大细胞募集,但不增加其他细胞类型进入支气管-肺泡灌洗液。除了不存在嗜酸性粒细胞或单独的EPO外,通过ELISA测定,寄生虫诱导的IgE反应增强,表明嗜酸性粒细胞参与IgE的调节。全身体积描记法表明,在缺乏嗜酸性粒细胞的情况下,挑战性感染中线虫诱导的气道生理变化减少,并且在单独缺乏EPO的原发感染中也是如此。然而,缺乏嗜酸性粒细胞或MBP-1实际上增加了杯状细胞粘液的产生。在没有嗜酸性粒细胞,EPO或MBP-1的情况下,我们在细胞因子反应中没有发现任何主要差异。这些结果表明,嗜酸性粒细胞在线虫诱发的病理过程中通过颗粒分泌物积极参与IgE和杯状细胞粘液的产生,并突出了它们作为效应细胞,损伤诱导细胞以及塑造先天和适应性免疫的监督细胞的重要性。

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