脚手架
血管生成
3d打印
骨愈合
生物医学工程
对偶(语法数字)
多孔性
材料科学
化学
医学
解剖
复合材料
癌症研究
艺术
文学类
作者
Shaorong Li,Yutao Cui,He Liu,Yuhang Tian,Yi Fan,Wang Gan,Jingwei Wang,Dankai Wu,Yanbing Wang
标识
DOI:10.1016/j.mtbio.2024.100943
摘要
The treatment of bone defects is a difficult problem in orthopedics. The excessive destruction of local bone tissue at defect sites destroys blood supply and renders bone regeneration insufficient, which further leads to delayed union or even nonunion. To solve this problem, in this study, we incorporated icariin into alginate/mineralized collagen (AMC) hydrogel and then placed the drug-loaded hydrogel into the pores of a 3D-printed porous titanium alloy (AMCI/PTi) scaffold to prepare a bioactive scaffold with the dual functions of promoting angiogenesis and bone regeneration. The experimental results showed that the ACMI/PTi scaffold had suitable mechanical properties, sustained drug release function, and biocompatibility. The released icariin and mineralized collagen (MC) synergistically promoted angiogenesis and osteogenic differentiation in vitro. After implantation into a rabbit radius defect, the composite scaffold showed a satisfactory effect in promoting bone repair. Therefore, this composite dual-functional scaffold could meet the requirements of bone defect treatment and provide a promising strategy for the repair of large segmental bone defects.
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