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原位拉曼分析 和 共生培养物中生物膜胞外多糖的形成。

In Situ Raman Analysis of Biofilm Exopolysaccharides Formed in and Commensal Cultures.

机构信息

Ceramic Physics Laboratory, Kyoto Institute of Technology, Sakyo-ku, Matsugasaki, Kyoto 606-8585, Japan.

Department of Immunology, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kamigyo-ku, 465 Kajii-cho, Kyoto 602-8566, Japan.

出版信息

Int J Mol Sci. 2023 Apr 3;24(7):6694. doi: 10.3390/ijms24076694.

Abstract

This study probed in vitro the mechanisms of competition/coexistence between (known for being correlated with health in the oral cavity) and (responsible for aciduric oral environment and formation of caries) by means of quantitative Raman spectroscopy and imaging. In situ Raman assessments of live bacterial culture/coculture focusing on biofilm exopolysaccharides supported the hypothesis that both species engaged in antagonistic interactions. Experiments of simultaneous colonization always resulted in coexistence, but they also revealed fundamental alterations of the biofilm with respect to their water-insoluble glucan structure. Raman spectra (collected at fixed time but different bacterial ratios) showed clear changes in chemical bonds in glucans, which pointed to an action by to discontinue the impermeability of the biofilm constructed by . The concurrent effects of glycosidic bond cleavage in water-insoluble α - 1,3-glucan and oxidation at various sites in glucans' molecular chains supported the hypothesis that secretion of oxygen radicals was the main "chemical weapon" used by in coculture.

摘要

本研究通过定量拉曼光谱和成像技术,探究了(已知与口腔健康相关)和(负责酸性口腔环境和龋齿形成)之间竞争/共存的机制。对活细菌培养/共培养的原位拉曼评估侧重于生物膜胞外多糖,支持了这两种物种存在拮抗相互作用的假设。同时定植实验总是导致共存,但它们也揭示了生物膜在其水不溶性葡聚糖结构方面的根本变化。拉曼光谱(在固定时间但不同细菌比例下收集)显示出葡聚糖中化学键的明显变化,这表明 作用于中断 构建的生物膜的不渗透性。水不溶性α-1,3-葡聚糖中糖苷键的断裂和葡聚糖分子链中各个部位的氧化的并发作用支持了这样的假设,即氧自由基的分泌是 在共培养中使用的主要“化学武器”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2ed/10095091/d6e90a7acd12/ijms-24-06694-g001.jpg

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