Yang Qingyi, Li Fan, Ye Yangyang, Zhang Xu
Tianjin Medical University School and Hospital of Stomatology & Tianjin Key Laboratory of Oral Soft and Hard Tissues Restoration and Regeneration, No.12 Qixiangtai Road, Heping District, Tianjin 300070, PR China.
Tianjin Medical University Institute of Stomatology, No.12 Qixiangtai Road, Heping District, Tianjin 300070, PR China.
Med Rev (2021). 2024 Aug 23;5(2):87-116. doi: 10.1515/mr-2024-0035. eCollection 2025 Apr.
Dental caries, driven by plaque biofilm, poses a major oral health challenge due to imbalance in mineralization and demineralization. The primary objective in caries management is to maintain biofilm homeostasis while facilitating the repair and regeneration of dental hard tissues, thus restoring both structural integrity and functionality of affected teeth. Though antimicrobial and remineralization approaches haven shown promise, their standalone utilization without concurrent bacterial control or rebalancing lacks an integrated strategy to effectively arrest caries progression. Furthermore, according to the principles of minimally invasive dentistry, treatment materials should exhibit high permeability to ensure optimal sealing of demineralized tooth surfaces. The concept of interrupting dental caries (IDC) has emerged as a holistic approach, drawing upon extensive research encompassing three pivotal techniques: antibacterial strategies, remineralization therapies, and infiltration mechanisms, all of which are indispensable components in combating the progression of dental caries. In this review, we provide a comprehensive overview of the mechanisms and applications of antibacterial, remineralization, and infiltration technologies within the context of caries management. Additionally, we summarize advanced materials that align with the IDC concept, aiming to offer valuable insights for designing next-generation materials adept at preventing or halting caries progression efficiently.
由牙菌斑生物膜引发的龋齿,由于矿化与脱矿失衡,对口腔健康构成了重大挑战。龋齿管理的主要目标是维持生物膜的动态平衡,同时促进牙齿硬组织的修复与再生,从而恢复患牙的结构完整性和功能。尽管抗菌和再矿化方法已显示出前景,但在没有同时控制细菌或恢复平衡的情况下单独使用它们,缺乏有效阻止龋齿进展的综合策略。此外,根据微创牙科的原则,治疗材料应具有高渗透性,以确保对脱矿牙面的最佳密封。中断龋齿(IDC)的概念已作为一种整体方法出现,它基于广泛的研究,涵盖了三种关键技术:抗菌策略、再矿化疗法和渗透机制,所有这些都是对抗龋齿进展不可或缺的组成部分。在本综述中,我们全面概述了龋齿管理背景下抗菌、再矿化和渗透技术的机制及应用。此外,我们总结了符合IDC概念的先进材料,旨在为设计能够有效预防或阻止龋齿进展的下一代材料提供有价值的见解。