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三株菌株成熟生物膜中实时产酸及细胞外基质形成,特别提及木糖醇

Real-time acid production and extracellular matrix formation in mature biofilms of three strains with special reference to xylitol.

作者信息

Ikäläinen Henna, Guzman Camilo, Saari Markku, Söderling Eva, Loimaranta Vuokko

机构信息

Institute of Dentistry, University of Turku, Lemminkaisenkatu 2, 20520, Turku, Finland.

Cell Imaging and Cytometry Core, Turku Bioscience, University of Turku and Åbo Akademi University, Turku, Finland.

出版信息

Biofilm. 2024 Aug 28;8:100219. doi: 10.1016/j.bioflm.2024.100219. eCollection 2024 Dec.

Abstract

BACKGROUND

Acidogenicity and production of an extracellular matrix (ECM) are important virulence factors for the dental caries-associated bacteria, such as that live in biofilms on tooth surface. The ECM protects the bacteria from the flushing and buffering effects of saliva resulting in highly acidic microenvironments inside the biofilm.

MATERIALS AND METHODS

In this study, we applied real-time assays to follow biofilm formation and pH decrease in a growth medium and saliva by three strains, as well as acid neutralization inside the mature biofilm. Results were compared with the biofilm composition. Effects of a non-fermentable polyol, xylitol, on acid production and acid neutralization in mature biofilms were evaluated by real-time pH measurements and confocal microscopy.

RESULTS

Combination of real-time pH measurements with biofilm accumulation assays revealed growth media dependent differences in the pH decrease and biofilm accumulation, as well as strain differences in acid production and biofilm formation but not in the buffer diffusion through ECM. The presence of xylitol reduced the pH drop during biofilm formation of all strains. In addition, with strain Ingbritt xylitol reduced the amount of ECM in biofilm, which increased the rate of acid neutralization inside the biofilm after buffer exposure.

CONCLUSION

Our results stress the importance of biofilm matrix in creating the acidic environment inside a biofilm, especially in the presence of saliva. In addition, our results suggest a novel mechanism of xylitol action. The observed increase in the permeability of the ECM after xylitol exposure may allow acid-neutralizing saliva to reach deeper layer of the biofilms and thus, in part, explain previous clinical observations of reduced plaque acidogenicity after frequent xylitol use.

摘要

背景

产酸性和细胞外基质(ECM)的产生是与龋齿相关细菌的重要毒力因子,例如生活在牙齿表面生物膜中的细菌。细胞外基质可保护细菌免受唾液的冲洗和缓冲作用,从而在生物膜内部形成高度酸性的微环境。

材料与方法

在本研究中,我们应用实时测定法来跟踪三种菌株在生长培养基和唾液中生物膜的形成以及pH值的降低情况,以及成熟生物膜内部的酸中和情况。将结果与生物膜组成进行比较。通过实时pH测量和共聚焦显微镜评估了一种不可发酵的多元醇木糖醇对成熟生物膜中酸产生和酸中和的影响。

结果

实时pH测量与生物膜积累测定相结合,揭示了生长培养基对pH降低和生物膜积累的依赖性差异,以及菌株在酸产生和生物膜形成方面的差异,但在缓冲液通过细胞外基质的扩散方面没有差异。木糖醇的存在降低了所有菌株在生物膜形成过程中的pH下降。此外,对于Ingbritt菌株,木糖醇减少了生物膜中细胞外基质的量,这增加了缓冲液暴露后生物膜内部的酸中和速率。

结论

我们的结果强调了生物膜基质在生物膜内部创造酸性环境的重要性,尤其是在有唾液存在的情况下。此外,我们的结果提出了木糖醇作用的一种新机制。木糖醇暴露后观察到的细胞外基质通透性增加可能使酸中和性唾液能够到达生物膜的更深层,从而部分解释了先前关于频繁使用木糖醇后牙菌斑产酸性降低的临床观察结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34dd/11402442/59075f29ae05/gr1.jpg

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