Tsuchida Sachio, Umemura Hiroshi, Iizuka Kazuhide, Yamamoto Haruka, Shimazaki Isamu, Shikata Elisa, Nakayama Tomohiro
Divisions of Laboratory Medicine, Department of Pathology and Microbiology, Nihon University School of Medicine, 30-1 Oyaguchikamicho, Itabashi-ku, Tokyo, Japan.
World J Microbiol Biotechnol. 2024 Dec 18;41(1):11. doi: 10.1007/s11274-024-04224-3.
Periodontal disease is characterized by bacterial toxins within the oral biofilm surrounding the teeth, leading to gingivitis and the gradual dissolution of the alveolar bone, which supports the teeth. Notably, symptoms in the early stages of the disease are often absent. Similarly, dental caries occurs when oral bacteria metabolize dietary sugars, producing acids that dissolve tooth enamel and dentin. These bacteria are commonly present in the oral cavity of most individuals. Metabolomics, a relatively recent addition to the "omics" research landscape, involves the comprehensive analysis of metabolites in vivo to elucidate pathological mechanisms and accelerate drug discovery. Meanwhile, the term "microbiome" refers to the collection of microorganisms within a specific environmental niche or their collective genomes. The human microbiome plays a critical role in health and disease, influencing a wide array of physiological and pathological processes. Recent advances in microbiome research have identified numerous bacteria implicated in dental caries and periodontal disease. Additionally, studies have uncovered various pathogenic factors associated with these microorganisms. This review focuses on recent findings in metabolomics and the microbiome, specifically targeting oral bacteria linked to dental caries and periodontal disease. We acknowledge the limitation of relying exclusively on the MEDLINE database via PubMed, while excluding other sources such as gray literature, conference proceedings, and clinical practice guidelines.
牙周病的特征是牙齿周围口腔生物膜中的细菌毒素,导致牙龈炎和支撑牙齿的牙槽骨逐渐溶解。值得注意的是,该病早期通常没有症状。同样,当口腔细菌代谢膳食糖时,会产生溶解牙釉质和牙本质的酸,从而发生龋齿。这些细菌在大多数人的口腔中普遍存在。代谢组学是“组学”研究领域中相对较新的一项内容,它涉及对体内代谢物进行全面分析,以阐明病理机制并加速药物发现。同时,“微生物组”一词指特定环境生态位内的微生物集合或它们的集体基因组。人类微生物组在健康和疾病中起着关键作用,影响着广泛的生理和病理过程。微生物组研究的最新进展已确定了许多与龋齿和牙周病有关的细菌。此外,研究还发现了与这些微生物相关的各种致病因素。本综述重点关注代谢组学和微生物组的最新研究成果,特别针对与龋齿和牙周病相关的口腔细菌。我们承认仅通过PubMed依赖MEDLINE数据库的局限性,同时排除了其他来源,如灰色文献、会议论文集和临床实践指南。