Ren Xiameng, Wang Min, Du Jiabao, Dai Yu, Dang Liuyi, Li Zheng, Shu Jian
Laboratory for Functional Glycomics, Faculty of Life Science & Medicine, Northwest University, Xi'an, China.
School of Medicine, Faculty of Life Science & Medicine, Northwest University, Xi'an, China.
Int J Biol Macromol. 2024 Dec;282(Pt 2):136932. doi: 10.1016/j.ijbiomac.2024.136932. Epub 2024 Oct 28.
The human oral cavity serves as the natural entry port to both the gastrointestinal and respiratory tracts, and hosts a diverse microbial community essential for maintaining health. Dysbiosis of this microbiome can lead to various diseases. Glycans, as vital carriers of biological information, are indispensable structural components of living organisms and play key roles in numerous biological processes. In the oral microbiome, glycans influence microbial binding to host receptors, promote colonization, and mediate communication among microbial communities, as well as between microbes and the host immune system. Targeting glycans may provide innovative strategies for modulating the composition of the oral microbiome, with broader implications for human health. Additionally, exogenous glycans regulate the oral microbiome by serving as carbon and energy sources for microbes, while certain specific glycans can inhibit microbial growth and activity. This review summarizes glycosylation pathways in oral bacteria and fungi, explores the regulation of host-microbiota interactions by glycans, and discusses the effects of exogenous glycans on oral microbiome. The review aims to highlight the multifaceted role of glycans in shaping the oral microbiome and its impact on the host, while also indicates potential future applications.
人类口腔是胃肠道和呼吸道的天然入口,并且容纳着一个对维持健康至关重要的多样化微生物群落。这种微生物群的生态失调会导致各种疾病。聚糖作为生物信息的重要载体,是生物体不可或缺的结构成分,并在众多生物过程中发挥关键作用。在口腔微生物群中,聚糖影响微生物与宿主受体的结合,促进定植,并介导微生物群落之间以及微生物与宿主免疫系统之间的交流。靶向聚糖可能为调节口腔微生物群的组成提供创新策略,对人类健康具有更广泛的影响。此外,外源聚糖通过作为微生物的碳源和能源来调节口腔微生物群,而某些特定聚糖可以抑制微生物的生长和活性。本综述总结了口腔细菌和真菌中的糖基化途径,探讨了聚糖对宿主 - 微生物群相互作用的调节,并讨论了外源聚糖对口腔微生物群的影响。该综述旨在强调聚糖在塑造口腔微生物群及其对宿主的影响方面的多方面作用,同时也指出了潜在的未来应用。