伤口愈合
体内
单宁酸
自愈水凝胶
生物相容性
口腔粘膜
粘附
体外
药理学
糖尿病足
材料科学
化学
生物医学工程
生物化学
医学
糖尿病
外科
病理
高分子化学
生物
复合材料
有机化学
冶金
生物技术
内分泌学
作者
Kaize Su,Jinxuan Li,Xiaoxian Wu,Duanyu Deng,Han Gu,Ying Sun,Xu Wang,Wenhuan Huang,Yan Wang,Xiangcun Shang,Cuiyu Xue,Lihua Liang,Xiaofang Li,Dongli Li,Song Ang,Kun Zhang,Panpan Wu,Keke Wu
标识
DOI:10.1002/adhm.202303252
摘要
Abstract The complex preparation, weak wet tissue adhesion, and limited biological activity of traditional oral wound dressings usually impede their efficient treatment and healing for diabetic oral mucosal defects. To overcome these problems, a novel hydrogel adhesive (named CFT hydrogel) is rapidly constructed using a one‐step method based on dual‐dynamic covalent cross‐linking. Compared with the commercial oral patches, the CFT hydrogel shows superior in vivo (rat tongue) wet tissue adhesion performance. Additionally, the CFT hydrogel exhibits unique acid‐responsive properties, thereby facilitating the release of bioactive molecule tannic acid in the acidic diabetic wound microenvironment. And a series of in vitro experiments substantiate the favorable biocompatibility and bioactivity properties (including antibacterial, antioxidative, anti‐inflammatory, and angiogenetic effects) exhibited by CFT hydrogel. Moreover, in vivo experiments conducted on a diabetic rat model with oral mucosal defects demonstrate that the CFT hydrogel exhibits significant efficacy in protecting against mucosal wounds, alleviating inflammatory reactions, thereby facilitating the wound‐healing process. Taken together, this study provides a promising and comprehensive therapeutic option with great potential for the clinical management of oral mucosa defects in diabetic patients.
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