生物相容性
明胶
肌腱
韧性
极限抗拉强度
材料科学
组织工程
再生(生物学)
生物医学工程
生物相容性材料
机械转化
复合材料
解剖
化学
细胞生物学
医学
生物化学
生物
冶金
作者
Ximin Yuan,Zhou Zhu,Pengcheng Xia,Zhenjia Wang,Xiao Zhao,Xiao Jiang,Tianming Wang,Qing Gao,Jie Xu,Debin Shan,Bin Guo,Qingqiang Yao,Yong He
标识
DOI:10.1002/advs.202301665
摘要
Abstract Tough hydrogel has attracted considerable interest in various fields, however, due to poor biocompatibility, nondegradation, and pronounced compositional differences from natural tissues, it is difficult to be used for tissue regeneration. Here, a gelatin‐based tough hydrogel (GBTH) is proposed to fill this gap. Inspired by human exercise to improve muscle strength, the synergistic effect is utilized to generate highly functional crystalline domains for resisting crack propagation. The GBTH exhibits excellent tensile strength of 6.67 MPa (145‐fold that after untreated gelation). Furthermore, it is directly sutured to a ruptured tendon of adult rabbits due to its pronounced toughness and biocompatibility, self‐degradability in vivo, and similarity to natural tissue components. Ruptured tendons can compensate for mechanotransduction by GBTH and stimulate tendon differentiation to quickly return to the initial state, that is, within eight weeks. This strategy provides a new avenue for preparation of highly biocompatible tough hydrogel for tissue regeneration.
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