首页> 外文期刊>The Journal of Allergy and Clinical Immunology >IL-22 attenuates IL-25 production by lung epithelial cells and inhibits antigen-induced eosinophilic airway inflammation.
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IL-22 attenuates IL-25 production by lung epithelial cells and inhibits antigen-induced eosinophilic airway inflammation.

机译:IL-22减弱肺上皮细胞的IL-25产生,并抑制抗原诱导的嗜酸性气道炎症。

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BACKGROUND: IL-22 functions as both a proinflammatory cytokine and an anti-inflammatory cytokine in various inflammations, depending on the cellular and cytokine milieu. However, the roles of IL-22 in the regulation of allergic airway inflammation are still largely unknown. OBJECTIVE: We sought to determine whether IL-22 is involved in the regulation of allergic airway inflammation. METHODS: We examined IL-22 production and its cellular source at the site of antigen-induced airway inflammation in mice. We also examined the effect of IL-22 neutralization, as well as IL-22 administration, on antigen-induced airway inflammation. We finally examined the effect of IL-22 on IL-25 production from a lung epithelial cell line (MLE-15 cells). RESULTS: Antigen inhalation induced IL-22 production in the airways of sensitized mice. CD4(+) T cells, but not other lymphocytes or innate cells, infiltrating in the airways produced IL-22, and one third of IL-22-producing CD4(+) T cells also produced IL-17A. The neutralization of IL-22 by anti-IL-22 antibody enhanced antigen-induced IL-13 production, eosinophil recruitment, and goblet cell hyperplasia in the airways. On the other hand, intranasal administration of recombinant IL-22 attenuated antigen-induced eosinophil recruitment into the airways. Moreover, anti-IL-22 antibody enhanced antigen-induced IL-25 production in the airways, and anti-IL-25 antibody reversed the enhancing effect of anti-IL-22 antibody on antigen-induced eosinophil recruitment into the airways. Finally, IL-22 inhibited IL-13-mediated enhancement of IL-25 expression in IL-1beta- or LPS-stimulated MLE-15 cells. CONCLUSION: IL-22 attenuates antigen-induced airway inflammation, possibly by inhibiting IL-25 production by lung epithelial cells.
机译:背景:IL-22在多种炎症中既起促炎细胞因子的作用,又起抗炎细胞因子的作用,这取决于细胞和细胞因子的环境。然而,IL-22在过敏性气道炎症调节中的作用仍然是未知的。目的:我们试图确定IL-22是否参与了过敏性气道炎症的调节。方法:我们在抗原诱导的小鼠气道炎症部位检查了IL-22的产生及其细胞来源。我们还检查了IL-22中和作用以及IL-22施用对抗原诱导的气道炎症的影响。我们最终检查了IL-22对肺上皮细胞系(MLE-15细胞)产生IL-25的影响。结果:抗原吸入引起致敏小鼠气道中IL-22的产生。 CD4(+)T细胞,但不渗入气道的其他淋巴细胞或先天细胞,产生IL-22,而产生IL-22的CD4(+)T细胞的三分之一也产生IL-17A。抗IL-22抗体对IL-22的中和作用增强了抗原诱导的IL-13产生,嗜酸性粒细胞募集和气道杯状细胞增生。另一方面,鼻内施用重组IL-22减弱了抗原诱导的嗜酸性粒细胞募集进入气道。此外,抗IL-22抗体增强了抗原诱导的气道中IL-25的产生,抗IL-25抗体逆转了抗IL-22抗体对抗原诱导的嗜酸性粒细胞募集进入气道的增强作用。最后,IL-22抑制了IL-1β或LPS刺激的MLE-15细胞中IL-13介导的IL-25表达的增强。结论:IL-22可能通过抑制肺上皮细胞分泌IL-25而减轻抗原诱导的气道炎症。

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