材料科学
3d打印
对偶(语法数字)
血管生成
纳米技术
生物医学工程
工程类
医学
癌症研究
艺术
文学类
作者
Bo Chen,Qi Chen,Haodong Zhang,Dong H. Zhang,Cuidi Li,Ke Ma,Maowei Dou,William W. Lu,Qi Jin,Lianfu Deng,Runhui Liu,Wenguo Cui
标识
DOI:10.1002/adfm.202422691
摘要
Abstract Large segment bone defects pose a significant challenge in the field of orthopedic surgery, requiring effective and innovative approaches for restoration. However, many existing scaffolds are bioinert and do not support crucial processes such as cell adhesion, proliferation, and vascularization. In this study, a dual‐bionic 3D printing bredigite scaffold is developed, featuring a combination of physical structure and bioactive functions. Specifically, the structure‐mimetic scaffold has an isotropic single‐cell structure suitable for defects with varying load‐bearing requirements and allowing the ingrowth of vessels and bone. Meanwhile, an extracellular matrix peptide‐mimetic β‐amino acid polymer DM 50 CO 50 and deferoxamine are modified onto the scaffold simultaneously to promote the adhesion of bone marrow mesenchymal stem cells and vascularization. The dual‐bionic scaffolds demonstrate outstanding osteogenic and angiogenic properties in a rat model with large segment bone defects to promote bone restoration, implying a promising strategy in designing scaffolds to promote osteoconductivity and angiogenesis for large segment bone restoration.
科研通智能强力驱动
Strongly Powered by AbleSci AI