Choe Robert, Balhaddad Abdulrahman A, Fisher John P, Melo Mary Anne S, Huang Huang-Chiao
Fischell Department of Bioengineering, University of Maryland, College Park, MD, USA.
Center for Engineering Complex Tissues, University of Maryland, College Park, MD, USA.
Photochem Photobiol. 2021 Sep;97(5):916-929. doi: 10.1111/php.13434. Epub 2021 May 4.
Dental implants are the most common rehabilitation and restorative treatment used to replace missing teeth. Biofilms adhere to implant surfaces to trigger implant-associated infection and inflammatory response. Clinically, the biofilm induces a local host response with the infiltration of phagocytic immune cells. The pro-inflammatory surroundings set off osteoclastogenesis, which leads to the septic loosening of the implant. The standard of dental care for implant-associated infection relies on a combination of surgery and antimicrobial therapy. Antimicrobial photodynamic therapy is a noninvasive and photochemistry-based approach capable of reducing bacterial load and modulating inflammatory responses. In this review, we explore the photobiomodulation and disinfection outcomes promoted by photodynamic therapy for implant infections, highlighting the quality of evidence on the most up-to-date studies, and discuss the major challenges on the advance of these therapeutic strategies.
牙种植体是用于替代缺失牙齿的最常见的修复和矫治治疗方法。生物膜附着于种植体表面,引发与种植体相关的感染和炎症反应。临床上,生物膜通过吞噬性免疫细胞的浸润诱导局部宿主反应。促炎环境引发破骨细胞生成,导致种植体感染性松动。种植体相关感染的牙科护理标准依赖于手术和抗菌治疗的联合应用。抗菌光动力疗法是一种基于光化学的非侵入性方法,能够减少细菌载量并调节炎症反应。在本综述中,我们探讨了光动力疗法对种植体感染的光生物调节和消毒效果,突出了最新研究的证据质量,并讨论了这些治疗策略进展中的主要挑战。