乙烯醇
材料科学
聚吡咯
自愈水凝胶
生物相容性
生物电子学
自愈
壳聚糖
导电体
纳米技术
导电聚合物
复合材料
聚合物
化学工程
高分子化学
生物传感器
聚合
替代医学
冶金
病理
工程类
医学
作者
Jieyu Zhang,Can Wu,Yuanyuan Xu,Jiali Chen,Ning Ning,Zeyu Yang,Yi Guo,Xuefeng Hu,Yunbing Wang
标识
DOI:10.1021/acsami.0c08291
摘要
Flexible bioelectronics for biomedical applications requires a stretchable, conductive, self-healable, and biocompatible material that can be obtained by cost-effective chemicals and strategies. Herein, we synthesized polypyrrole or Zn-functionalized chitosan molecules, which are cross-linked with poly(vinyl alcohol) to form a hydrogel through dynamic di-diol complexations, hydrogen bonding, and zinc-based coordination bonds. These multiple dynamic interactions endow the material with excellent stretchability and autonomous self-healing ability. The choice of Food and Drug Administration (FDA)-approved materials (poly(vinyl alcohol) and chitosan) as the matrix materials ensures the good biocompatibility of the hydrogel. The conductivity contributed by the polypyrrole allowed the hydrogel to sense strain and temperature, and the coordinated Zn significantly enhanced the antibacterial activity of the hydrogel. Moreover, using a diabetic rat model, we have proved that this hydrogel is capable of promoting the healing of the infected chronic wounds with electrical stimulation.
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