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口腔链球菌通过拮抗致龋病原菌变形链球菌来维持口腔生物膜的内稳态。

Streptococcus oralis maintains homeostasis in oral biofilms by antagonizing the cariogenic pathogen Streptococcus mutans.

机构信息

Clinic of Preventive Dentistry, Periodontology and Cariology, Divison of Oral Microbiology and Immunology, Center of Dental Medicine, University of Zürich, Zürich, Switzerland.

Division of Oral Diseases, Department of Dental Medicine, Karolinska Institute, Stockholm, Sweden.

出版信息

Mol Oral Microbiol. 2018 Jun;33(3):234-239. doi: 10.1111/omi.12216. Epub 2018 Feb 20.

Abstract

Bacteria residing in oral biofilms live in a state of dynamic equilibrium with one another. The intricate synergistic or antagonistic interactions between them are crucial for determining this balance. Using the six-species Zürich "supragingival" biofilm model, this study aimed to investigate interactions regarding growth and localization of the constituent species. As control, an inoculum containing all six strains was used, whereas in each of the further five inocula one of the bacterial species was alternately absent, and in the last, both streptococci were absent. Biofilms were grown anaerobically on hydroxyapatite disks, and after 64 h they were harvested and quantified by culture analyses. For visualization, fluorescence in situ hybridization and confocal laser scanning microscopy were used. Compared with the control, no statistically significant difference of total colony-forming units was observed in the absence of any of the biofilm species, except for Fusobacterium nucleatum, whose absence caused a significant decrease in total bacterial numbers. Absence of Streptococcus oralis resulted in a significant decrease in Actinomyces oris, and increase in Streptococcus mutans (P < .001). Absence of A. oris, Veillonella dispar or S. mutans did not cause any changes. The structure of the biofilm with regards to the localization of the species did not result in observable changes. In summary, the most striking observation of the present study was that absence of S. oralis resulted in limited growth of commensal A. oris and overgrowth of S. mutans. These data establish highlight S. oralis as commensal keeper of homeostasis in the biofilm by antagonizing S. mutans, so preventing a caries-favoring dysbiotic state.

摘要

居住在口腔生物膜中的细菌彼此之间处于动态平衡状态。它们之间复杂的协同或拮抗相互作用对于确定这种平衡至关重要。使用苏黎世“龈上”六物种生物膜模型,本研究旨在研究关于组成物种生长和定位的相互作用。作为对照,使用含有所有六种菌株的接种物,而在另外五个接种物中的每一个中,交替地不存在一种细菌物种,在最后一个接种物中,两种链球菌都不存在。生物膜在羟磷灰石盘上厌氧生长,64 小时后收获并用培养分析定量。为了可视化,使用荧光原位杂交和共聚焦激光扫描显微镜。与对照相比,除了纤毛菌(Fusobacterium nucleatum)外,在不存在任何生物膜物种的情况下,总菌落形成单位没有观察到统计学上的显著差异,而纤毛菌的缺失导致总细菌数量显著减少。缺少链球菌(Streptococcus oralis)会导致放线菌(Actinomyces oris)显著减少,而变形链球菌(Streptococcus mutans)显著增加(P<.001)。缺少放线菌(A. oris)、差异韦荣球菌(Veillonella dispar)或变形链球菌(S. mutans)不会导致任何变化。物种定位的生物膜结构没有导致可观察到的变化。总之,本研究最引人注目的观察结果是,缺少链球菌(S. oralis)导致共生放线菌(A. oris)的生长受限和变形链球菌(S. mutans)的过度生长。这些数据突出了链球菌(S. oralis)通过拮抗变形链球菌(S. mutans)来维持生物膜内的稳态,从而防止有利于龋齿的生态失调状态。

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