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Airway Epithelial NF-κB Activation Promotes Allergic Sensitization to an Innocuous Inhaled Antigen

机译:气道上皮NF-κB激活促进对无害吸入抗原的过敏性过敏。

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摘要

Activation of NF-κB in airway epithelium is observed in allergic asthma and is induced by inhalation of numerous infectious and reactive substances. Many of the substances that activate NF-κB in the airway epithelium are also capable of acting as adjuvants to elicit antigen-specific sensitization to concomitantly inhaled protein, thereby circumventing the inherent bias of the lung to promote tolerance to innocuous antigens. We have used a transgenic mouse inducibly expressing a constitutively active mutant of the inhibitor of nuclear factor κB (IκB) kinase β (CAIKKβ) that activates NF-κB only in nonciliated airway epithelial cells to test whether activation of this intracellular signaling pathway in this specific cell type is sufficient to establish a pulmonary environment permissive to the development of allergic sensitization to inhaled protein. When airway epithelial CAIKKβ was transiently expressed in antigen-naive mice only during initial inhalation of ovalbumin, the mice became allergically sensitized to the antigen. As a consequence, subsequent inhalation of ovalbumin alone led to an allergic asthma–like response that included airway hyperresponsiveness to methacholine, eosinophilia, mucus expression, elevated serum levels of antigen-specific IgE and IgG1, and splenic CD4+ T cells that secreted T helper type 2 and type 17 cytokines in response to in vitro antigen restimulation. Furthermore, CD11c+ cells in the mediastinal lymph nodes (MLN) of CAIKKβ-expressing mice displayed significantly elevated levels of activation markers. These data implicate airway epithelial NF-κB activation as a critical modulator of the adaptive immune response to inhaled antigens via the secretion of soluble mediators that affect the capacity of CD11c+ cells to undergo maturation and promote antigen-specific allergic responses.
机译:在过敏性哮喘中观察到气道上皮中的NF-κB活化,并且是通过吸入大量传染性和反应性物质诱导的。许多激活气道上皮中NF-κB的物质也能够作为佐剂,引起对伴随吸入的蛋白质的抗原特异性致敏,从而规避了肺部固有的偏见,从而增强了对无害抗原的耐受性。我们已经使用了一种转基因小鼠来诱导表达一种仅在非纤毛呼吸道上皮细胞中激活NF-κB的核因子κB(IκB)激酶β(CAIKKβ)抑制剂的组成型活性突变体,以测试这种细胞内信号传导途径是否在这种特异性下被激活细胞类型足以建立允许对吸入蛋白产生过敏性致敏作用的肺环境。当仅在初次吸入卵清蛋白期间,在未接触抗原的小鼠中短暂表达气道上皮CAIKKβ时,小鼠对抗原变态反应致敏。结果,随后仅吸入卵清蛋白会导致类似哮喘的过敏反应,包括气道对乙酰甲胆碱,嗜酸性粒细胞增多,粘液表达,血清中抗原特异性IgE和IgG1升高,以及脾CD4 + 响应体外抗原再刺激而分泌2型和17型T辅助细胞因子的T细胞。此外,表达CAIKKβ的小鼠的纵隔淋巴结(MLN)中的CD11c + 细胞表现出明显升高的激活标志物水平。这些数据暗示气道上皮NF-κB活化是通过影响CD11c + 细胞成熟并促进抗原特异性的能力的可溶性介体分泌而对吸入抗原适应性免疫反应的关键调节剂。过敏反应。

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