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Antigen-Specific IgG ameliorates allergic airway inflammation via Fcγ receptor IIB on dendritic cells

机译:抗原特异性IgG通过树突状细胞上的Fcγ受体IIB减轻过敏性气道炎症

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BackgroundThere have been few reports on the role of Fc receptors (FcRs) and immunoglobulin G (IgG) in asthma. The purpose of this study is to clarify the role of inhibitory FcRs and antigen presenting cells (APCs) in pathogenesis of asthma and to evaluate antigen-transporting and presenting capacity by APCs in the tracheobronchial mucosa.MethodsIn FcγRIIB deficient (KO) and C57BL/6 (WT) mice, the effects of intratracheal instillation of antigen-specific IgG were analysed using the model with sensitization and airborne challenge with ovalbumin (OVA). Thoracic lymph nodes instilled with fluorescein-conjugated OVA were analysed by fluorescence microscopy. Moreover, we analysed the CD11c+ MHC class II+ cells which intaken fluorescein-conjugated OVA in thoracic lymph nodes by flow cytometry. Also, lung-derived CD11c+ APCs were analysed by flow cytometry. Effects of anti-OVA IgG1 on bone marrow dendritic cells (BMDCs) in vitro were also analysed. Moreover, in FcγRIIB KO mice intravenously transplanted dendritic cells (DCs) differentiated from BMDCs of WT mice, the effects of intratracheal instillation of anti-OVA IgG were evaluated by bronchoalveolar lavage (BAL).ResultsIn WT mice, total cells and eosinophils in BAL fluid reduced after instillation with anti-OVA IgG1. Anti-OVA IgG1 suppressed airway inflammation in hyperresponsiveness and histology. In addition, the number of the fluorescein-conjugated OVA in CD11c+ MHC class II+ cells of thoracic lymph nodes with anti-OVA IgG1 instillation decreased compared with PBS. Also, MHC class II expression on lung-derived CD11c+ APCs with anti-OVA IgG1 instillation reduced. Moreover, in vitro, we showed that BMDCs with anti-OVA IgG1 significantly decreased the T cell proliferation. Finally, we demonstrated that the lacking effects of anti-OVA IgG1 on airway inflammation on FcγRIIB KO mice were restored with WT-derived BMDCs transplanted intravenously.ConclusionAntigen-specific IgG ameliorates allergic airway inflammation via FcγRIIB on DCs.
机译:背景很少有关于Fc受体(FcR)和免疫球蛋白G(IgG)在哮喘中的作用的报道。这项研究的目的是阐明抑制性FcR和抗原呈递细胞(APC)在哮喘发病机理中的作用,并评估APC在气管支气管粘膜中的抗原转运和呈递能力。方法FcγRIIB缺乏(KO)和C57BL / 6 (WT)小鼠,气管内滴入抗原特异性IgG的效果使用具有敏化作用和卵清蛋白(OVA)的空气传播攻击模型进行了分析。通过荧光显微镜分析滴入荧光素偶联的OVA的胸腔淋巴结。此外,我们通过流式细胞仪分析了在胸腔淋巴结中摄取荧光素结合的OVA的CD11c + MHC II +类细胞。另外,通过流式细胞术分析了肺来源的CD11c + APC。还分析了抗OVA IgG1对体外骨髓树突状细胞(BMDC)的影响。此外,在FcγRIIBKO小鼠中,从WT小鼠的BMDC分化而来的静脉移植的树突状细胞(DC)中,通过支气管肺泡灌洗(BAL)评估了气管内滴注抗OVA IgG的效果。用抗OVA IgG1滴注后减少。抗OVA IgG1抑制气道炎症反应和组织学变化。此外,与OVA IgG1相比,胸腔淋巴结的CD11c + MHC II +类细胞中荧光素偶联的OVA数量比PBS减少。同样,通过抗OVA IgG1滴注,肺源性CD11c + APC上的MHC II类表达降低。此外,在体外,我们显示具有抗OVA IgG1的BMDC显着降低了T细胞增殖。最后,我们证明了抗OVA IgG1对FcγRIIBKO小鼠气道炎症的缺乏作用通过静脉内移植的WT来源的BMDC得以恢复。

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