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On-going mechanical damage from mastication drives homeostatic Th17 responses at the oral barrier

机译:咀嚼的持续机械损伤在口腔屏障处驱动稳态Th17反应

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摘要

Immuno-surveillance networks operating at barrier sites are tuned by local tissue cues to ensure effective immunity. Site-specific commensal bacteria provide key signals ensuring host defense in the skin and gut. However, how the oral microbiome and tissue-specific signals balance immunity and regulation at the gingiva, a key oral barrier, remains minimally explored. In contrast to the skin and gut, we demonstrate that gingiva-resident T helper 17 (Th17) cells developed via a commensal colonization-independent mechanism. Accumulation of Th17 cells at the gingiva was driven in response to the physiological barrier damage that occurs during mastication. Physiological mechanical damage, via induction of interleukin 6 (IL-6) from epithelial cells, tailored effector T cell function, promoting increases in gingival Th17 cell numbers. These data highlight that diverse tissue-specific mechanisms govern education of Th17 cell responses and demonstrate that mechanical damage helps define the immune tone of this important oral barrier.
机译:在屏障位置运行的免疫监视网络通过局部组织提示进行调整,以确保有效的免疫力。特定部位的共生细菌可提供关键信号,确保宿主在皮肤和肠道中的防御能力。然而,如何最小化口腔微生物组和组织特异性信号如何平衡牙龈(主要的口腔屏障)的免疫力和调节。与皮肤和肠道不同,我们证明了通过共生定居非依赖性机制发育的牙龈驻留T辅助17(Th17)细胞。响应咀嚼过程中发生的生理屏障损害,促使Th17细胞在牙龈处积累。生理机械损伤,通过从上皮细胞诱导白介素6(IL-6)诱导,量身定制的效应T细胞功能,促进牙龈Th17细胞数量增加。这些数据突出表明,多种组织特异性机制控制着Th17细胞反应的教育,并证明机械损伤有助于确定这一重要口腔屏障的免疫张力。

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