Zhang Josie Shizhen, Chu Chun-Hung, Yu Ollie Yiru
Faculty of Dentistry, The University of Hong Kong, Hong Kong SAR, China.
Dent J (Basel). 2022 Sep 30;10(10):184. doi: 10.3390/dj10100184.
Dental caries remains the most prevalent oral disease worldwide. The development of dental caries is highly associated with the microbiota in the oral cavity. Microbiological research of dental caries has been conducted for over a century, with conventional culture-based methods and targeted molecular methods being used in order to identify the microorganisms related to dental caries. These methods' major limitation is that they can identify only part of the culturable microorganisms in the oral cavity. Introducing sequencing-based technology and bioinformatics analysis has boosted oral microbiome research and greatly expanded the understanding of complex oral microbiology. With the continuing revolution of molecular technologies and the accumulated sequence data of the oral microbiome, researchers have realized that microbial composition alone may be insufficient to uncover the relationship between caries and the microbiome. Most updated evidence has coupled metagenomics with transcriptomics and metabolomics techniques in order to comprehensively understand the microbial contribution to dental caries. Therefore, the objective of this article is to give an overview of the research of the oral microbiome and the development of dental caries. This article reviews the classical concepts of the microbiological aspect of dental caries and updates the knowledge of caries microbiology with the results of current studies on the oral microbiome. This paper also provides an update on the caries etiological theory, the microorganisms related to caries development, and the shifts in the microbiome in dental caries development.
龋齿仍然是全球最普遍的口腔疾病。龋齿的发展与口腔微生物群密切相关。龋齿的微生物学研究已经进行了一个多世纪,采用传统的基于培养的方法和靶向分子方法来鉴定与龋齿相关的微生物。这些方法的主要局限性在于它们只能鉴定口腔中部分可培养的微生物。引入基于测序的技术和生物信息学分析推动了口腔微生物组研究,并极大地扩展了对复杂口腔微生物学的理解。随着分子技术的不断革新以及口腔微生物组序列数据的积累,研究人员意识到仅微生物组成可能不足以揭示龋齿与微生物组之间的关系。最新证据将宏基因组学与转录组学和代谢组学技术相结合,以便全面了解微生物对龋齿的影响。因此,本文的目的是概述口腔微生物组研究以及龋齿的发展情况。本文回顾了龋齿微生物学方面的经典概念,并根据当前口腔微生物组研究结果更新了龋齿微生物学知识。本文还提供了龋齿病因理论、与龋齿发展相关的微生物以及龋齿发展过程中微生物组变化的最新情况。