活性氧
环糊精
牙周炎
碘
抗菌剂
癌症研究
牙槽
生物化学
化学
体外
炎症
药品
氧化应激
碘化物
氧化磷酸化
药理学
细胞毒性
组合化学
金黄色葡萄球菌
作者
Siyu He,Huipeng Xu,Siwen Wang,Xintao Chen,Yunxi Li,Wuzhen Ma,Xiaohong Ren,Li Wu,Yanling Xue,Jiwen Zhang
标识
DOI:10.1016/j.carpta.2025.101070
摘要
Periodontitis, an inflammatory disorder driven by microbial dysbiosis, is featured as elevated reactive oxygen species (ROS) and dysregulated inflammation, leading to tissue destruction and alveolar bone resorption. A promising therapeutic approach involves antimicrobial actions with ROS neutralization. Addressing the clinical limitation of elemental iodine (I 2 ) to topical use, we engineered a ROS-scavenging covalent cyclodextrin framework (CCF) embedding I 2 to confer dual functionality for periodontitis treatment. Initially, potassium iodide cyclodextrin metal-organic framework (KI-CD-MOF) was synthesized, which was then cross-linked with oxalyl chloride to introduce a ROS-scavenging peroxalate ester bond. Simultaneously, the iodide ions in KI-CD-MOF were oxidized to I 2 , which was integrated throughout the framework. The resulting I 2 -CCF particles had a cubic morphology (300–500 nm) and an I 2 content of 1.03±0.45 %, exhibiting an outstanding biosafety profile, strong bactericidal effectiveness, and significant ROS elimination capability. In vitro , I 2 -CCF downregulated the expression of pro-inflammatory factors TNF-α and IL-1β, while promoting the secretion of anti-inflammatory markers IL-10 and Arg-1. Crucially, in a rodent periodontitis model, I 2 -CCF effectively suppressed dental plaque accumulation, reduced periodontal inflammation, and limited alveolar bone resorption. This work establishes I 2 -CCF as a multipurpose nanotherapeutic that concurrently targets the infectious and oxidative components of periodontitis, offering a potent alternative to conventional treatments.
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