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由含氟聚合物组成的氧自足纳米液滴用于高效光动力疗法根除口腔生物膜。

Oxygen self-sufficient nanodroplet composed of fluorinated polymer for high-efficiently PDT eradicating oral biofilm.

作者信息

Cao Bing, Ma Yingfei, Zhang Jian, Wang Yanan, Wen Yating, Wang Ruixue, Cao Donghai, Zhang Ruiping

机构信息

Shanxi Bethune Hospital, Shanxi Academy of Medical Sciences, Tongji Shanxi Hospital, Third Hospital of Shanxi Medical University, Taiyuan, 030032, China.

Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.

出版信息

Mater Today Bio. 2024 May 15;26:101091. doi: 10.1016/j.mtbio.2024.101091. eCollection 2024 Jun.

Abstract

Oral biofilm is the leading cause of dental caries, which is difficult to completely eradicate because of the complicated biofilm structure. What's more, the hypoxia environment of biofilm and low water-solubility of conventional photosensitizers severely restrict the therapeutic effect of photodynamic therapy (PDT) for biofilm. Although conventional photosensitizers could be loaded in nanocarriers, it has reduced PDT effect because of aggregation-caused quenching (ACQ) phenomenon. In this study, we fabricated an oxygen self-sufficient nanodroplet (PFC/TPA@FNDs), which was composed of fluorinated-polymer (FP), perfluorocarbons (PFC) and an aggregation-induced emission (AIE) photosensitizer (Triphenylamine, TPA), to eradicate oral bacterial biofilm and whiten tooth. Fluorinated-polymer was synthesized by polymerizing (Dimethylamino)ethyl methacrylate, fluorinated monomer and 1-nonanol monomer. The nanodroplets could be protonated and behave strong positive charge under bacterial biofilm acid environment promoting nanodroplets deeply penetrating biofilm. More importantly, the nanodroplets had extremely high PFC and oxygen loading efficacy because of the hydrophobic affinity between fluorinated-polymer and PFC to relieve the hypoxia environment and enhance PDT effect. Additionally, compared with conventional ACQ photosensitizers loaded system, PFC/TPA@FNDs could behave superior PDT effect to ablate oral bacterial biofilm under light irradiation due to the unique AIE effect. caries animal model proved the nanodroplets could reduce dental caries area without damaging tooth structure. tooth whitening assay also confirmed the nanodroplets had similar tooth whitening ability compared with commercial tooth whitener HO, while did not disrupt the surface microstructure of tooth. This oxygen self-sufficient nanodroplet provides an alternative visual angle for oral biofilm eradication in biomedicine.

摘要

口腔生物膜是龋齿的主要原因,由于生物膜结构复杂,难以完全根除。此外,生物膜的缺氧环境和传统光敏剂的低水溶性严重限制了光动力疗法(PDT)对生物膜的治疗效果。尽管传统光敏剂可以负载在纳米载体中,但由于聚集诱导猝灭(ACQ)现象,其PDT效果降低。在本研究中,我们制备了一种氧自足纳米液滴(PFC/TPA@FNDs),它由氟化聚合物(FP)、全氟碳化合物(PFC)和聚集诱导发光(AIE)光敏剂(三苯胺,TPA)组成,用于根除口腔细菌生物膜和美白牙齿。氟化聚合物是通过甲基丙烯酸(二甲氨基)乙酯、氟化单体和1-壬醇单体聚合而成。纳米液滴在细菌生物膜酸性环境下可质子化并表现出强正电荷,促进纳米液滴深入穿透生物膜。更重要的是,由于氟化聚合物与PFC之间的疏水亲和力,纳米液滴具有极高的PFC和氧负载效率,以缓解缺氧环境并增强PDT效果。此外,与传统的ACQ光敏剂负载系统相比,由于独特的AIE效应,PFC/TPA@FNDs在光照下对消融口腔细菌生物膜表现出优异的PDT效果。龋齿动物模型证明纳米液滴可以减少龋齿面积而不损害牙齿结构。牙齿美白试验也证实,与市售牙齿美白剂HO相比,纳米液滴具有相似的牙齿美白能力,同时不会破坏牙齿的表面微观结构。这种氧自足纳米液滴为生物医学中根除口腔生物膜提供了一个新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df79/11126933/06669d0987b2/ga1.jpg

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