生物电子学
自愈水凝胶
胶粘剂
材料科学
肿胀 的
粘附
明胶
共价键
生物粘附
组织工程
壳聚糖
生物医学工程
组织粘连
复合材料
聚合物
纳米技术
高分子化学
化学工程
生物传感器
图层(电子)
化学
有机化学
医学
工程类
作者
Gongwei Tian,Dan Yang,Cuiyuan Liang,Yan Liu,Jianhui Chen,Qinyi Zhao,Shuanglong Tang,Jianping Huang,Ping Xu,Zhiyuan Liu,Dianpeng Qi
标识
DOI:10.1002/adma.202212302
摘要
Reducing the swelling of tissue-adhesive hydrogels is crucial for maintaining stable tissue adhesion and inhibiting tissue inflammation. However, reported strategies for reducing swelling always result in a simultaneous decrease in the tissue adhesive strength of the hydrogel. Furthermore, once the covalent bonds break in the currently reported hydrogels, they cannot be rebuilt, and the hydrogel loses its tissue adhesive ability. In this work, a nonswelling hydrogel (named as "PAACP") possessing regenerable high tissue adhesion is synthesized by copolymerizing and crosslinking poly(vinyl butyral) with acrylic acid, gelatin, and chitosan-grafted N-acetyl-l-cysteine. The tissue adhesive strength of the obtained PAACP reaches 211.4 kPa, which is approximately ten times higher than that of the reported nonswelling hydrogels, and the hydrogel can be reused for multiple cycles. The as-prepared hydrogel shows great potential in soft bioelectronics, as muscle fatigue is successfully monitored via the electrode array and strain sensor integrated on PAACP substrates. The success of these bioelectronics offers potential applicability in the long-term diagnosis of muscle-related health conditions and prosthetic manipulations.
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