Cao Jingwei, Ma Qizhao, Shi Jia, Wang Xinyue, Ye Dingwei, Liang Jingou, Zou Jing
State Key Laboratory of Oral Diseases, National Center for Stomatology, National Clinical Research Center for Oral Diseases, Sichuan University, Chengdu 610064, China.
Department of Pediatric Dentistry, West China School of Stomatology, Sichuan University, Chengdu 610041, China.
Pathogens. 2025 Jan 23;14(2):111. doi: 10.3390/pathogens14020111.
Dental caries is the most common oral disease in the world and a chronic infectious disease. The cariogenic microbiome plays an important role in the process of caries. The ecological imbalance of microbiota leads to low pH, which causes caries. Therefore, antibacterial materials have always been a hot topic. Traditional antibacterial materials such as cationic antibacterial agents, metal ion antibacterial agents, and some natural extract antibacterial agents have good antibacterial effects. However, they can cause bacterial resistance and have poor biological safety when used for long-term purposes. Intelligent antibacterial materials, such as pH-responsive materials, nanozymes, photoresponsive materials, piezoelectric materials, and living materials are emerging antibacterial nano-strategies that can respond to the caries microenvironment or other specific stimuli to exert antibacterial effects. Compared with traditional antibacterial materials, these materials are less prone to bacterial resistanceand have good biological safety. This review summarizes the characteristics of cariogenic microbiota and some traditional or emerging antibacterial materials. These emerging antibacterial materials can accurately act on the caries microenvironment, showing intelligent antibacterial effects and providing new ideas for caries management.
龋齿是世界上最常见的口腔疾病,是一种慢性传染病。致龋微生物群落在龋齿形成过程中起重要作用。微生物群的生态失衡导致pH值降低,进而引发龋齿。因此,抗菌材料一直是研究热点。传统抗菌材料,如阳离子抗菌剂、金属离子抗菌剂和一些天然提取物抗菌剂,具有良好的抗菌效果。然而,长期使用时它们会导致细菌耐药性,且生物安全性较差。智能抗菌材料,如pH响应材料、纳米酶、光响应材料、压电材料和活体材料,是新兴的抗菌纳米策略,能够响应龋齿微环境或其他特定刺激以发挥抗菌作用。与传统抗菌材料相比,这些材料不易产生细菌耐药性,且具有良好的生物安全性。本文综述了致龋微生物群的特征以及一些传统或新兴的抗菌材料。这些新兴抗菌材料能够精准作用于龋齿微环境,展现出智能抗菌效果,为龋齿防治提供了新思路。
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