Thayumanavan Thangavelu, Harish B S, Subashkumar Rathinasamy, Shanmugapriya Karuppusamy, Karthik Velusamy
Department of Biotechnology, KIT-Kalaignarkarunanidhi Institute of Technology (Autonomous), Coimbatore, 641 402 India.
Department of Biotechnology, Sri Ramakrishna College of Arts and Science (Autonomous), Coimbatore, 641 006 India.
3 Biotech. 2025 Mar;15(3):62. doi: 10.1007/s13205-025-04227-3. Epub 2025 Feb 14.
Dental caries is considered as the most common and multifactorial disease worldwide, caused by a variety of oral microorganisms like spp., spp., spp., spp., and , which colonize food debris in oral cavities. Of them, is the predominant bacterium and can induce progressive tooth destruction, especially during dentition. The superior characteristics of , such as the presence of the cell surface protein P1 and exopolysaccharide-synthesizing enzymes, acid tolerance, biofilm-forming ability mediated by A gene, and multidrug resistance, render it a highly virulent pathogen in the etiology of dental caries. Given its significant role in dental caries, extensive research has been conducted over the past few decades, focusing on the development of specific antimicrobial treatments, and other innovative therapeutic approaches. To gain deeper insights into the genetic diversity and epidemiological patterns of , various genotypic methods have been developed and successfully employed. By combining the insights gained from genetic studies of with the suitable control measures against the biofilm, we can develop innovative and effective strategies for preventing and treating dental caries.
龋齿被认为是全球最常见的多因素疾病,由多种口腔微生物引起,如某某菌属、某某菌属、某某菌属、某某菌属和某某菌属,这些微生物在口腔中定植于食物残渣。其中,某某菌是主要细菌,可导致牙齿进行性破坏,尤其是在换牙期。某某菌的卓越特性,如细胞表面蛋白P1的存在、胞外多糖合成酶、耐酸性、由A基因介导的生物膜形成能力以及多重耐药性,使其成为龋齿病因中极具毒性的病原体。鉴于其在龋齿中的重要作用,在过去几十年中进行了广泛研究,重点是开发特定的抗菌治疗方法以及其他创新治疗方法。为了更深入了解某某菌的遗传多样性和流行病学模式,已开发并成功应用了各种基因分型方法。通过将从某某菌遗传研究中获得的见解与针对生物膜的适当控制措施相结合,我们可以制定创新有效的预防和治疗龋齿的策略。