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Immunobiology: Crucial roles of B7-H1 and B7-DC expressed on mesenteric lymph node dendritic cells in the generation of antigen-specific CD4+Foxp3+ regulatory T cells in the establishment of oral tolerance

机译:免疫生物学:B7-H1和B7-DC在肠系膜淋巴结树突状细胞中表达在抗原特异性CD4 + Foxp3 +调节性T细胞生成中的关键作用

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摘要

Oral tolerance is a key feature of intestinal immunity, generating systemic tolerance to fed antigens. However, the molecular mechanism mediating oral tolerance remains unclear. In this study, we examined the role of the B7 family members of costimulatory molecules in the establishment of oral tolerance. Deficiencies of B7-H1 and B7-DC abrogated the oral tolerance, accompanied by enhanced antigen-specific CD4+ T-cell response and IgG1 production. Mesenteric lymph node (MLN) dendritic cells (DCs) displayed higher levels of B7-H1 and B7-DC than systemic DCs, whereas they showed similar levels of CD80, CD86, and B7-H2. MLN DCs enhanced the antigen-specific generation of CD4+Foxp3+ inducible regulatory T cells (iTregs) from CD4+Foxp3 T cells rather than CD4+ effector T cells (Teff) relative to systemic DCs, owing to the dominant expression of B7-H1 and B7-DC. Furthermore, the antigen-specific conversion of CD4+Foxp3 T cells into CD4+Foxp3+ iTregs occurred in MLNs greater than in peripheral organs during oral tolerance under steady-state conditions, and such conversion required B7-H1 and B7-DC more than other B7 family members, whereas it was severely impaired under inflammatory conditions. In conclusion, our findings suggest that B7-H1 and B7-DC expressed on MLN DCs are essential for establishing oral tolerance through the de novo generation of antigen-specific CD4+Foxp3+ iTregs.
机译:口服耐受性是肠道免疫力的关键特征,对饲喂抗原产生全身耐受性。然而,介导口服耐受的分子机制仍不清楚。在这项研究中,我们检查了共刺激分子的B7家族成员在建立口腔耐受中的作用。 B7-H1和B7-DC的缺乏消除了口服耐受性,并伴随着抗原特异性CD4 + T细胞应答和IgG1产生的增强。肠系膜淋巴结(MLN)树突状细胞(DC)的B7-H1和B7-DC水平高于全身性DC,而CD80,CD86和B7-H2水平相似。 MLN DC增强了CD4 + Foxp3 -<的CD4 + Foxp3 + 诱导型调节性T细胞(iTregs)的抗原特异性生成。 / sup> T细胞而不是CD4 + 效应T细胞(Teff)相对于全身DC,这是由于B7-H1和B7-DC占主导地位。此外,CD4 + Foxp3 - T细胞向CD4 + Foxp3 + iTregs的抗原特异性转化发生在在稳态条件下口服耐受期间,MLN大于周围器官,并且这种转化比其他B7家族成员更需要B7-H1和B7-DC,而在炎症条件下则严重受损。总之,我们的发现表明,在MLN DC上表达的B7-H1和B7-DC对于通过从头产生抗原特异性CD4 + Foxp3 + iTregs。

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