A systematic review of Streptococcus Mutans and Veillonellae species interactions in dental caries progression: Positive or Negative impact?

Q2 Pharmacology, Toxicology and Pharmaceutics F1000Research Pub Date : 2025-01-23 eCollection Date: 2024-01-01 DOI:10.12688/f1000research.155987.2
Faizul Hasan, Hendrik Setia Budi, Rajesh Ramasamy, Tantiana Tantiana, Rini Devijanti Ridwan, Ervina Restiwulan Winoto, Prawati Nuraini, Juni Handajani, Ariadna Adisattya Djais, Silvia Anitasari
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Abstract

Background: The interaction between Streptococcus mutans (S. mutans) and Veillonella species (Veillonella spp.) is unclear. This study aims to investigate the interaction between S. mutans and Veillonella spp. on caries development using systematic review.

Methods: This systematic review was accorded to the guideline of the Preferred Reporting Items for Systematic Reviews and Meta-Analyses. Three electronic databases, namely PubMed, Embase, and the Cochrane library, were used to conduct a systematic search for eligible studies from their inception until July 18, 2023. PROSPERO registration number was No. CRD42023445968.

Results: We initially identified 4,774 articles. After eliminating duplicates and irrelevant articles, 11 studies met the inclusion criteria. The studies revealed important aspects of the relationship between S. mutans and Veillonella spp. in dental caries. One significant finding is that Veillonella spp. can affect the acid production capacity of S. mutans. Some studies indicate that Veillonella spp. can inhibit the acid production by S. mutans, potentially reducing the cariogenic process. Another aspect is the competition for substrates. Veillonella spp. utilize lactic acid, which is a by product of S. mutans metabolism, as a source of carbon. This metabolic interaction may decrease the availability of lactic acid for S. mutans, potentially influencing its cariogenic potential.

Conclusions: This systematic review highlights the emerging evidence on the interaction between S. mutans and Veillonella spp. in dental caries. The findings suggest that Veillonella spp. can modulate the acid production, and substrate competition of S. mutans, potentially influencing the cariogenic process.

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变形链球菌和细孔菌相互作用在龋齿进展中的系统综述:积极的还是消极的影响?
背景:变形链球菌(S. mutans)与细孔菌(Veillonella)之间的相互作用尚不清楚。本研究旨在通过系统综述的方法探讨变形链球菌与细孔菌在龋病发展中的相互作用。方法:本系统评价符合系统评价和荟萃分析的首选报告项目指南。三个电子数据库,即PubMed, Embase和Cochrane图书馆,被用于对符合条件的研究进行系统搜索,从它们开始到2023年7月18日。普洛斯彼罗注册号为:CRD42023445968。结果:我们最初确定了4,774篇文章。在剔除重复和不相关文章后,有11项研究符合纳入标准。这些研究揭示了变形链球菌和细孔菌在龋齿中的关系的重要方面。一个重要的发现是细孔菌可以影响变形链球菌的产酸能力。一些研究表明,细孔菌可以抑制变形链球菌的产酸,潜在地减少龋齿过程。另一个方面是对基材的竞争。细孔菌利用变形链球菌代谢的副产物乳酸作为碳的来源。这种代谢相互作用可能会降低变形链球菌的乳酸可用性,潜在地影响其致龋潜能。结论:本系统综述强调了变形链球菌和细孔菌在龋齿中相互作用的新证据。研究结果表明,细孔菌可以调节变形链球菌的产酸和底物竞争,从而可能影响蛀牙过程。
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来源期刊
F1000Research
F1000Research Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
5.00
自引率
0.00%
发文量
1646
审稿时长
1 weeks
期刊介绍: F1000Research publishes articles and other research outputs reporting basic scientific, scholarly, translational and clinical research across the physical and life sciences, engineering, medicine, social sciences and humanities. F1000Research is a scholarly publication platform set up for the scientific, scholarly and medical research community; each article has at least one author who is a qualified researcher, scholar or clinician actively working in their speciality and who has made a key contribution to the article. Articles must be original (not duplications). All research is suitable irrespective of the perceived level of interest or novelty; we welcome confirmatory and negative results, as well as null studies. F1000Research publishes different type of research, including clinical trials, systematic reviews, software tools, method articles, and many others. Reviews and Opinion articles providing a balanced and comprehensive overview of the latest discoveries in a particular field, or presenting a personal perspective on recent developments, are also welcome. See the full list of article types we accept for more information.
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