Wang Xiao, Shi Wenxuan, Jin Yu, Li Zhuoyuan, Deng Tanjun, Su Tingshu, Zheng Ao, Cao Lingyan
Shanghai Ninth People's Hospital, College of Stomatology, Shanghai Jiao Tong University School of Medicine, Shanghai Jiao Tong University, 639 Zhizaoju Road, Shanghai, 200011, China.
National Center for Stomatology, Shanghai Key Laboratory of Stomatology, Shanghai Engineering Research Center of Advanced Dental Technology and Materials, National Clinical Research Center for Oral Diseases, 639 Zhizaoju Road, Shanghai, 200011, China.
J Nanobiotechnology. 2025 Jan 23;23(1):40. doi: 10.1186/s12951-025-03126-2.
The escalating hazards posed by bacterial infections underscore the imperative for pioneering advancements in next-generation antibacterial modalities and treatments. Present therapeutic methodologies are frequently impeded by the constraints of insufficient biofilm infiltration and the absence of precision in pathogen-specific targeting. In this current study, we have used chlorin e6 (Ce6), zeolitic imidazolate framework-8 (ZIF-8), polydopamine (PDA), and UBI peptide to formulate an innovative nanosystem meticulously engineered to confront bacterial infections and effectually dismantle biofilm architectures through the concerted mechanism of photodynamic therapy (PDT)/photothermal therapy (PTT) therapies, including in-depth research, especially for oral bacteria and oral biofilm. Ce6@ZIF-8-PDA/UBI nanosystem, with effective adhesion and bacteria-targeting, affords a nuanced bacterial targeting strategy and augments penetration depth into oral biofilm matrices. The Ce6@ZIF-8-PDA/UBI nanosystem potentiated bacterial binding and aggregation. Upon exposure to red-light (RL) irradiation, Ce6@ZIF-8-PDA/UBI showed excellent antibacterial effect on S. aureus, E. coli, F. nucleatum, and P. gingivalis and exceptional light-driven antibiofilm activity to P. gingivalis biofilm, which was a result of the efficient bacterial localization mediated by PDA/UBI, as well as the PDT/PTT facilitated by Ce6/PDA interactions. Collectively, these versatile nanoplatforms augur a promising and strategic avenue for controlling infection and biofilm, thereby holding significant potential for future integration into clinical paradigms. The original application of the developed nanosystem in oral biofilms also provides a new strategy for effective oral infection treatment.
细菌感染带来的危害不断升级,凸显了在下一代抗菌模式和治疗方法上取得开创性进展的紧迫性。目前的治疗方法常常受到生物膜浸润不足和病原体特异性靶向缺乏精准性的限制。在本研究中,我们使用了二氢卟吩e6(Ce6)、沸石咪唑酯骨架-8(ZIF-8)、聚多巴胺(PDA)和泛素(UBI)肽来构建一种创新的纳米系统,该系统经过精心设计,旨在对抗细菌感染,并通过光动力疗法(PDT)/光热疗法(PTT)的协同机制有效破坏生物膜结构,尤其针对口腔细菌和口腔生物膜进行了深入研究。Ce6@ZIF-8-PDA/UBI纳米系统具有有效的粘附性和细菌靶向性,提供了一种细致入微的细菌靶向策略,并增加了对口腔生物膜基质的渗透深度。Ce6@ZIF-8-PDA/UBI纳米系统增强了细菌的结合和聚集。在暴露于红光(RL)照射下时,Ce6@ZIF-8-PDA/UBI对金黄色葡萄球菌、大肠杆菌、具核梭杆菌和牙龈卟啉单胞菌显示出优异的抗菌效果,对牙龈卟啉单胞菌生物膜具有卓越的光驱动抗生物膜活性,这是由PDA/UBI介导的有效细菌定位以及Ce6/PDA相互作用促进的PDT/PTT共同作用的结果。总体而言,这些多功能纳米平台预示着一条控制感染和生物膜的有前景的战略途径,从而在未来融入临床模式方面具有巨大潜力。所开发的纳米系统在口腔生物膜中的原始应用也为有效治疗口腔感染提供了一种新策略。