首页> 外文期刊>Immunity >Interleukin 23 Production by Intestinal CD103 +CD11b + Dendritic Cells in Response to Bacterial Flagellin Enhances Mucosal Innate Immune Defense
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Interleukin 23 Production by Intestinal CD103 +CD11b + Dendritic Cells in Response to Bacterial Flagellin Enhances Mucosal Innate Immune Defense

机译:肠道CD103 + CD11b +树突状细胞对细菌鞭毛蛋白的反应产生白介素23增强粘膜固有免疫防御。

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摘要

Microbial penetration of the intestinal epithelial barrier triggers inflammatory responses that include induction of the bactericidal C-type lectin RegIIIγ. Systemic administration of flagellin, a bacterial protein that stimulates Toll-like receptor 5 (TLR5), induces epithelial expression of RegIIIγ and protects mice from intestinal colonization with antibiotic-resistant bacteria. Flagellin-induced RegIIIγ expression is IL-22 dependent, but how TLR signaling leads to IL-22 expression is incompletely defined. By using conditional depletion of lamina propria dendritic cell (LPDC) subsets, we demonstrated that CD103 +CD11b + LPDCs, but not monocyte-derived CD103 -CD11b + LPDCs, expressed high amounts of IL-23 after bacterial flagellin administration and drove IL-22-dependent RegIIIγ production. Maximal expression of IL-23 subunits IL-23p19 and IL-12p40 occurred within 60 min of exposure to flagellin. IL-23 subsequently induced a burst of IL-22 followed by sustained RegIIIγ expression. Thus, CD103 +CD11b + LPDCs, in addition to promoting long-term tolerance to ingested antigens, also rapidly produce IL-23 in response to detection of flagellin in the lamina propria.
机译:肠道上皮屏障的微生物渗透会触发炎症反应,包括诱导杀菌C型凝集素RegIIIγ。鞭毛蛋白的全身给药是一种刺激Toll样受体5(TLR5)的细菌蛋白,可诱导RegIIIγ的上皮表达,并保护小鼠免受抗生素耐药性细菌在肠道中的定殖。鞭毛蛋白诱导的RegIIIγ表达是IL-22依赖性的,但是TLR信号传导如何导致IL-22表达的定义还不完全。通过使用固有的固有层树突状细胞(LPDC)亚型的耗竭,我们证明了CD103 + CD11b + LPDC,但不是单核细胞衍生的CD103 -CD11b + LPDC,在细菌鞭毛蛋白施用和驱动IL-22后表达了大量的IL-23。依赖的RegIIIγ产生。 IL-23亚基IL-23p19和IL-12p40的最大表达发生在暴露于鞭毛蛋白的60分钟内。 IL-23随后诱导IL-22爆发,随后持续表达RegIIIγ。因此,CD103 + CD11b + LPDC除了促进对摄入抗原的长期耐受性之外,还响应固有层中鞭毛蛋白的检测而迅速产生IL-23。

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