丝素
材料科学
再生(生物学)
丝绸
聚合物
化学工程
生物矿化
纳米技术
复合材料
工程类
生物
细胞生物学
作者
Renjie Liang,Rui Li,Weidong Mo,Xianzhu Zhang,Jinchun Ye,Chang Xie,Wenyue Li,Zhi Peng,Yuqing Gu,Yuxuan Huang,Shufang Zhang,Xiaozhao Wang,Hongwei Ouyang
标识
DOI:10.1016/j.bioactmat.2024.06.024
摘要
Although natural polymers have been widely used in constructing bone scaffolds, it still remains challenging to fabricate natural polymer-derived bone scaffolds with biomimetic mechanical properties as well as outstanding osteogenic properties for large-size and weight-bearing bone defects regeneration. Herein, an "organic-inorganic assembly" strategy is developed to construct silk fibroin (SF)-based bone scaffolds with the aforementioned merits. After secondary structure reshuffling, the 3.3-fold increment of β-sheet structures in SF hydrogel resulted in a 100-fold improvement of mineral-assembly efficacy via influencing the ion adsorption process and providing templates for mineral growth. Notably, abundant minerals were deposited within the hydrogel and also on the surface, which indicated entire mineral-assembly, which ensured the biomimetic mechanical properties of the digital light processing 3D printed SF hydrogel scaffolds with haversian-mimicking structure.
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