Department of Endodontics, Jilin Provincial Key Laboratory of Oral Biomedical Engineering, School and Hospital of Stomatology, Jilin University, Changchun, 130021, P. R. China.
College of Chemistry and Materials, Department of Chemistry and Laboratory of Advanced Materials, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, State Key Laboratory of Molecular Engineering of Polymers, Collaborative Innovation Center of Chemistry for Energy Materials (2011-iChEM), Fudan University, Shanghai, 200433, P. R. China.
Adv Healthc Mater. 2024 May;13(13):e2302926. doi: 10.1002/adhm.202302926. Epub 2024 Feb 5.
The successful treatment of persistent and recurrent endodontic infections hinges upon the eradication of residual microorganisms within the root canal system, which urgently needs novel drugs to deliver potent yet gentle antimicrobial effects. Antibacterial photodynamic therapy (aPDT) is a promising tool for root canal infection management. Nevertheless, the hypoxic microenvironment within the root canal system significantly limits the efficacy of this treatment. Herein, a nanohybrid drug, Ce6/CaO/ZIF-8@polyethylenimine (PEI), is developed using a bottom-up strategy to self-supply oxygen for enhanced aPDT. PEI provides a positively charged surface, which enables precise targeting of bacteria. CaO reacts with HO to generate O, which alleviates the hypoxia in the root canal and serves as a substrate for Ce6 under 660 nm laser irradiation, leading to the successful eradication of planktonic Enterococcus faecalis (E. faecalis) and biofilm in vitro and, moreover, the effective elimination of mature E. faecalis biofilm in situ within the root canal system. This smart design offers a viable alternative for mitigating hypoxia within the root canal system to overcome the restricted efficacy of photosensitizers, providing an exciting prospect for the clinical management of persistent endodontic infection.
成功治疗持续性和复发性根管内感染的关键在于消灭根管系统内残留的微生物,这迫切需要新的药物来提供有效而温和的抗菌作用。抗菌光动力疗法(aPDT)是一种有前途的根管感染管理工具。然而,根管系统内的缺氧微环境极大地限制了这种治疗的效果。在此,采用自下而上的策略开发了一种纳米杂化药物 Ce6/CaO/ZIF-8@聚乙烯亚胺(PEI),以自供氧来增强 aPDT。PEI 提供带正电荷的表面,能够精确靶向细菌。CaO 与 HO 反应生成 O,缓解根管内的缺氧,并在 660nm 激光照射下为 Ce6 提供底物,从而成功消除浮游粪肠球菌(E. faecalis)和体外生物膜,并有效消除根管系统内成熟的 E. faecalis 生物膜。这种智能设计为减轻根管内缺氧提供了一种可行的选择,克服了光敏剂疗效受限的问题,为持续性根管内感染的临床治疗提供了令人兴奋的前景。