材料科学
生物医学工程
骨愈合
微球
复合数
再生(生物学)
磷酸钙骨水泥
骨水泥
细胞外基质
碎片(计算)
股骨髁
去细胞化
组织工程
聚合物
脚手架
骨组织
海藻酸钙
水泥
生物相容性材料
再生医学
基质(化学分析)
复合材料
钙
作者
Mengyue Dou,Yuwen Wang,Ke Ma,Guojian Liu,Yuqin Jin,Dong H. Zhang,Haodong Zhang,Yuan Yuan,Qi Chen,Runhui Liu
标识
DOI:10.1002/adfm.202524421
摘要
Abstract Minimally invasive regenerative therapies based on bone cement hold significant application value in the field of bone defect repair. However, existing materials such as calcium phosphate cement (CPC) suffer from limitations including insufficient mechanical strength, susceptibility to disintegration, and lack of porous structure. In this study, a dual‐bionic alginate (Alg)/α‐tricalcium phosphate (α‐TCP) composite microsphere is developed that mimics both the physical structure and biological activity of natural bone. Structurally, the microspheres feature an organic–inorganic interpenetrating network, making it less prone to collapse and fragmentation compared to pure α‐TCP microspheres. Biologically, the microspheres are modified with Dba Y K Y ‐DM 50 CO 50 , a β‐amino acid polymer mimicking extracellular matrix (ECM) peptides, to promote cell adhesion. Notably, the Alg/α‐TCP composite microspheres enable integrated cell cryopreservation, recovery, and expansion, expanding their potential for downstream bone repair applications. Additionally, in a rat femoral condyle defect model, the composite microspheres exhibit exceptional bone regeneration efficacy, implying a promising strategy in designing materials for minimally invasive bone regeneration therapies.
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