首页> 外文期刊>Annals of the New York Academy of Sciences >Finding a needle in a haystack: Bacteroides fragilis polysaccharide A as the archetypical symbiosis factor
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Finding a needle in a haystack: Bacteroides fragilis polysaccharide A as the archetypical symbiosis factor

机译:在大海捞针中找到一种方法:脆弱拟杆菌(Bacteroides fragilis)多糖A作为典型的共生因子

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Starting from birth, all animals develop a symbiotic relationship with their resident microorganisms that benefits both the microbe and the host. Recent advances in technology have substantially improved our ability to direct research toward the identification of important microbial species that affect host physiology. The identification of specific commensal molecules from these microbes and their mechanisms of action is still in its early stages. Polysaccharide A (PSA) of Bacteroides fragilis is the archetypical example of a commensal molecule that can modulate the host immune system in health and disease. This zwitterionic polysaccharide has a critical impact on the development of the mammalian immune system and also on the stimulation of interleukin 10-producing CD4(+) T cells; consequently, PSA confers benefits to the host with regard to experimental autoimmune, inflammatory, and infectious diseases. In this review, we summarize the current understanding of the immunomodulatory effects of B. fragilis PSA and discuss these effects as a novel immunological paradigm. In particular, we discuss recent advances in our understanding of the unique functional mechanisms of this molecule and its therapeutic potential, and we review the recent literature in the field of microbiome research aimed at discovering new commensal products and their immunomodulatory potential.
机译:从出生开始,所有动物都会与它们的驻留微生物建立共生关系,从而使微生物和宿主都受益。技术上的最新进展已大大提高了我们指导研究方向以鉴定影响宿主生理的重要微生物的能力。从这些微生物中鉴定特定共生分子及其作用机理仍处于早期阶段。脆弱拟杆菌(Bacteroides fragilis)的多糖A(PSA)是在健康和疾病中可以调节宿主免疫系统的共生分子的典型例子。这种两性离子多糖对哺乳动物免疫系统的发育以及对产生白介素10的CD4(+)T细胞的刺激具有至关重要的影响。因此,PSA在实验性自身免疫,炎症和传染性疾病方面为宿主带来了好处。在这篇综述中,我们总结了对脆弱芽孢杆菌PSA免疫调节作用的当前理解,并将这些作用作为一种新颖的免疫学范式进行了讨论。特别是,我们讨论了对这种分子的独特功能机制及其治疗潜力的理解方面的最新进展,并回顾了旨在发现新的共生产物及其免疫调节潜力的微生物组研究领域的最新文献。

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