脚手架
材料科学
骨愈合
生物医学工程
再生(生物学)
数据库管理
骨形态发生蛋白
骨形态发生蛋白2
组织工程
骨组织
细胞生物学
解剖
化学
生物
体外
医学
生物化学
基因
光电子学
CMOS芯片
放大器
作者
Jixing Ye,Ningyuan Liu,Zongxin Li,Liehua Liu,Zheng Ming,Xueping Wen,Huiqin Wang,Yanqin Xu,Biemin Sun,Qiang Zhou
标识
DOI:10.1021/acsami.2c18824
摘要
Bioactive materials play vital roles in the repair of critical bone defects. However, bone tissue engineering and regenerative medicine are still challenged by the need to repair bone defects evenly and completely. In this study, we functionally simulated the natural creeping substitution process of autologous bone repair by constructing an injectable, hierarchically degradable bioactive scaffold with a composite hydrogel, decalcified bone matrix (DBM) particles, and bone morphogenetic protein 2. This composite scaffold exhibited superior mechanical properties. The scaffold promoted cell proliferation and osteogenic differentiation through multiple signaling pathways. The hierarchical degradation rates of the crosslinked hydrogel and DBM particles accelerated tissue ingrowth and bone formation with a naturally woven bone-like structure in vivo. In the rat calvarial critical defect repair model, the composite scaffold provided even and complete repair of the entire defect area while also integrating the new and host bone effectively. Our results indicate that this injectable, hierarchically degradable bioactive scaffold promotes bone regeneration and provides a promising strategy for evenly and completely repairing the bone defects.
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