Li Yihan, Stewart Cameron A, Finer Yoav
Faculty of Dentistry, University of Toronto, 124 Edward St., Toronto, ON M5G 1G6, Canada.
Institute of Biomedical Engineering, University of Toronto, 164 College St., Toronto, ON M5S 3E2, Canada.
Dent J (Basel). 2024 May 6;12(5):125. doi: 10.3390/dj12050125.
Despite reductions in bacterial infection and enhanced success rate, the widespread use of systemic antibiotic prophylaxis in implant dentistry is controversial. This use has contributed to the growing problem of antimicrobial resistance, along with creating significant health and economic burdens. The basic mechanisms that cause implant infection can be targeted by new prevention and treatment methods which can also lead to the reduction of systemic antibiotic exposure and its associated adverse effects. This review aims to summarize advanced biomaterial strategies applied to implant components based on anti-pathogenic mechanisms and immune balance mechanisms. It emphasizes that modifying the dental implant surface and regulating the early immune response are promising strategies, which may further prevent or slow the development of peri-implant infection, and subsequent failure.
尽管细菌感染有所减少且成功率有所提高,但全身抗生素预防在种植牙科中的广泛应用仍存在争议。这种使用导致了抗菌药物耐药性问题的日益严重,同时还造成了重大的健康和经济负担。导致种植体感染的基本机制可以通过新的预防和治疗方法来靶向,这些方法也可以减少全身抗生素的暴露及其相关不良反应。本综述旨在总结基于抗致病机制和免疫平衡机制应用于种植体部件的先进生物材料策略。它强调,修饰牙种植体表面和调节早期免疫反应是有前景的策略,这可能进一步预防或减缓种植体周围感染的发展以及随后的失败。