自愈水凝胶
明胶
材料科学
胶粘剂
单宁酸
化学工程
共价键
生物相容性材料
组织工程
京尼平
自愈
纳米技术
壳聚糖
高分子化学
复合材料
生物医学工程
图层(电子)
有机化学
化学
病理
替代医学
工程类
医学
作者
Qiuxia Zhao,Shengdong Mu,Yanru Long,Jin Zhou,Wuyong Chen,Didier Astruc,Carmen Gaidău,Haibin Gu
标识
DOI:10.1002/mame.201800664
摘要
Abstract Hydrogels, especially the ones with self‐recovery and adhesive performances, have attracted more and more attention owing to their wide practical potential in the biomedical field involving cell delivery, wound filling, and tissue engineering. Tannic acid (TA), a nature‐derived gallol‐rich polyphenol, exhibits not only unique chelating properties with transition metal cations but also desirable anti‐oxidation properties and strong bonding capability to proteins and gelatin. Thus, taking advantage of the versatility of TA, a one‐pot method is proposed herein to produce TA‐modified gelatin hydrogels with the aid of NaIO 4 under basic conditions. By changing the amount of NaIO 4 used, the obtained hydrogels are covalently cross‐linked to different degrees and consequently exhibit diversity in their self‐healing and adhesive properties. The gelling time, viscoelasticity, and morphology of hydrogels are investigated, and when the feed molar ratio of NaIO 4 to TA is adjusted to 15:1, the fabricated hydrogel shows optimum self‐healing efficiency of 73% and adhesive strength of 36 kPa. Additionally, considering the completely natural origin of TA and gelatin, this study offers an original way for the fabrication of biocompatible self‐healing and adhesive materials.
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