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Gut Microbiota Modulation on Intestinal Mucosal Adaptive Immunity

机译:肠道微生物A调节肠粘膜适应症免疫力

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The mammalian intestine harbors a remarkable number of microbes and their components and metabolites, which are fundamental for the instigation and development of the host immune system. The intestinal innate and adaptive immunity coordinate and interact with the symbionts contributing to the intestinal homeostasis through establishment of a mutually beneficial relationship by tolerating to symbiotic microbiota and retaining the ability to exert proinflammatory response towards invasive pathogens. Imbalance between the intestinal immune system and commensal organisms disrupts the intestinal microbiological homeostasis, leading to microbiota dysbiosis, compromised integrity of the intestinal barrier, and proinflammatory immune responses towards symbionts. This, in turn, exacerbates the degree of the imbalance. Intestinal adaptive immunity plays a critical role in maintaining immune tolerance towards symbionts and the integrity of intestinal barrier, while the innate immune system regulates the adaptive immune responses to intestinal commensal bacteria. In this review, we will summarize recent findings on the effects and mechanisms of gut microbiota on intestinal adaptive immunity and the plasticity of several immune cells under diverse microenvironmental settings.
机译:哺乳动物肠道患者是一种显着数量的微生物和它们的组分和代谢物,这对于宿主免疫系统的煽动和发展是基础的。通过耐受共生微生物,通过建立互利的关系并保留对侵袭性病原体施加促炎反应的能力,通过建立互利的关系来与肠道稳态有助于肠道稳态的共生和相互作用。肠免疫系统和共生生物之间的不平衡扰乱了肠道微生物稳态,导致微生物群脱敏,损害了肠道屏障的完整性,并促进了对Symbionts的血液炎症免疫应答。反过来,这加剧了不平衡的程度。肠道自适应免疫在保持对共生的免疫耐受和肠道屏障的完整性方面发挥着关键作用,而先天免疫系统调节对肠道共生细菌的适应性免疫应答。在本综述中,我们将总结最近关于肠道微生物群对肠道适应性豁难剂的影响和机制的结果,以及在不同微环境环境下的几种免疫细胞的可塑性。

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