自愈水凝胶
丝绸
弹性蛋白
材料科学
组织工程
聚合
药物输送
蛋白质工程
再生(生物学)
单体
纳米技术
生物物理学
细胞生物学
聚合物
生物医学工程
化学
高分子化学
生物化学
生物
复合材料
工程类
酶
遗传学
作者
Om Narayan,Xuan Mu,Onur Hasturk,David L. Kaplan
标识
DOI:10.1016/j.actbio.2020.12.018
摘要
Dynamically tunable biomaterials are of particular interest in the field of biomedical engineering because of the potential utility for shape-change materials, drug and cell delivery and tissue regeneration. Stimuli-responsive proteins formed into hydrogels are potential candidates for such systems, due to the genetic tailorability and control over structure-function relationships. Here we report the synthesis of genetically engineered Silk-Elastin-Like Protein (SELP) photoresponsive hydrogels. Polymerization of the SELPs and monomeric adenosylcobalamin (AdoB12)-dependent photoreceptor C-terminal adenosylcobalamin binding domain (CarHC) was achieved using genetically encoded SpyTag-SpyCatcher peptide-protein pairs under mild physiological conditions. The hydrogels exhibited a partial collapse of the crosslinked molecular network with both decreased loss and storage moduli upon exposure to visible light. The materials were also evaluated for cytotoxicity and the encapsulation and release of L929 murine fibroblasts from 3D cultures. The design of these photo-responsible proteins provides new stimuli-responsive SELP-CarHC hydrogels for dynamically tunable protein-based materials.
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