Oral and Maxillofacial Pathology, Malla Reddy Institute of Dental Sciences, Hyderabad, Telangana, India.
Oral and Maxillofacial Pathology, Saveetha Dental College & Hospitals, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, Tamil Nadu, India.
Arch Microbiol. 2024 Feb 28;206(3):127. doi: 10.1007/s00203-024-03856-1.
Globally, oral diseases affect nearly 3.5 billion people, accounting for 4.6% of the healthcare expenditure. Common oral diseases include dental caries and periodontal disease, associated with biofilms formed by cariogenic pathogens. Epidemiological studies associate carbohydrates with these diseases due to the sugars metabolized by cariogenic pathogens. This review focuses on dental caries and periodontal pathogens, quorum sensing, lectin-carbohydrate interactions, and various sugar molecules. Cariogenic sugars significantly influence biofilms by enhancing pathogen adhesion, viability, and gene expressions associated with biofilm formation. Moreover, lectin-carbohydrate interactions contribute to biofilm stability. Disrupting these interactions is a potential strategy for oral disease prevention. The use of nanoparticles, such as quantum dots, provides novel insights into lectin-sugar interactions and the development of inhibitors. Additionally, nanomaterials like calcium phosphate nanoparticles neutralize acids and inhibit microbial growth. This overview emphasizes understanding the relationships between oral diseases, microbial communities, and sugars to devise preventive and therapeutic strategies against oral diseases.
全球范围内,口腔疾病影响了近 35 亿人,占医疗保健支出的 4.6%。常见的口腔疾病包括龋齿和牙周病,这些疾病与致龋病原体形成的生物膜有关。由于致龋病原体代谢的糖,流行病学研究将碳水化合物与这些疾病联系起来。本综述重点关注龋齿和牙周病原体、群体感应、凝集素-碳水化合物相互作用以及各种糖分子。致龋糖通过增强病原体的黏附性、生存能力以及与生物膜形成相关的基因表达,显著影响生物膜。此外,凝集素-碳水化合物相互作用有助于生物膜的稳定性。破坏这些相互作用是预防口腔疾病的一种潜在策略。纳米粒子(如量子点)的使用为凝集素-糖相互作用以及抑制剂的开发提供了新的见解。此外,像磷酸钙纳米粒子这样的纳米材料可以中和酸并抑制微生物的生长。本综述强调了理解口腔疾病、微生物群落和糖之间关系的重要性,以制定预防和治疗口腔疾病的策略。