化学
生物材料
生物物理学
细胞粘附
细胞外
粘附
药物输送
蛋白质工程
生物化学
纳米技术
超分子化学
网状结缔组织
组氨酸
细胞生物学
蛋白质-蛋白质相互作用
蛋白质结构
肽
细胞毒性
组织工程
动态光散射
超分子组装
细胞外基质
细胞
肽序列
纳米生物技术
血浆蛋白结合
作者
Jinyuan Hu,Yongjie Ma,Kangjia Jiang,Jingbo Xu,Liang Guo,Yanwei Sun,HaiYun REN
标识
DOI:10.1021/acs.jafc.5c10994
摘要
Collagen is the most abundant protein in the extracellular matrix. Owing to its exceptional biocompatibility, collagen-based materials are widely utilized in biomedicine. Genetic engineering enables the production of collagen derivatives tailored to biomaterial applications. Herein, we engineered a stimulus-responsive system to regulate the supramolecular assembly of collagen-like proteins (CLPs). By introducing histidine (His) residues, we achieved metal-mediated coordination driving distinct three-dimensional (3D) architecture formation. Dynamic light scattering analysis confirmed aggregation upon the addition of Zn(II), while scanning electron microscopy (SEM) revealed their morphologies. Notably, the positioning of His residues governed the assembly morphology, with variants bearing terminal His-tags forming reticular networks and those with central residues yielding microflorette-shaped assemblies. Biological assessments demonstrated that these CLPs exhibit negligible cytotoxicity and support cell adhesion and migration comparable to natural collagen. Consequently, these proteins hold significant promise for drug delivery and regenerative medicine.
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