再生(生物学)
明胶
软骨
软骨发生
自愈水凝胶
透明软骨
生物物理学
材料科学
细胞生物学
化学
纳米技术
软骨细胞
生物
骨关节炎
关节软骨
生物化学
解剖
高分子化学
医学
替代医学
病理
作者
Chengkun Zhao,Xing Li,Xiaowen Han,Zhulian Li,Shaoquan Bian,Wei‐Nan Zeng,Mingming Ding,Jie Liang,Qing Jiang,Zongke Zhou,Yujiang Fan,Shouxin Zhang,Yong Sun
标识
DOI:10.1038/s41467-024-45703-3
摘要
Abstract The assembly of oligopeptide and polypeptide molecules can reconstruct various ordered advanced structures through intermolecular interactions to achieve protein-like biofunction. Here, we develop a “molecular velcro”-inspired peptide and gelatin co-assembly strategy, in which amphiphilic supramolecular tripeptides are attached to the molecular chain of gelatin methacryloyl via intra-/intermolecular interactions. We perform molecular docking and dynamics simulations to demonstrate the feasibility of this strategy and reveal the advanced structural transition of the co-assembled hydrogel, which brings more ordered β-sheet content and 10-fold or more compressive strength improvement. We conduct transcriptome analysis to reveal the role of co-assembled hydrogel in promoting cell proliferation and chondrogenic differentiation. Subcutaneous implantation evaluation confirms considerably reduced inflammatory responses and immunogenicity in comparison with type I collagen. We demonstrate that bone mesenchymal stem cells-laden co-assembled hydrogel can be stably fixed in rabbit knee joint defects by photocuring, which significantly facilitates hyaline cartilage regeneration after three months. This co-assembly strategy provides an approach for developing cartilage regenerative biomaterials.
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