Li Shaorong, Cui Yutao, Liu He, Tian Yuhang, Fan Yi, Wang Gan, Wang Jingwei, Wu Dankai, Wang Yanbing
Orthopaedic Medical Center, The Second Hospital of Jilin University, Changchun, 130041, China.
Mater Today Bio. 2024 Jan 4;24:100943. doi: 10.1016/j.mtbio.2024.100943. eCollection 2024 Feb.
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 excellent biocompatibility. The released icariin and mineralized collagen (MC) synergistically promoted angiogenesis and osteogenic differentiation . 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 in clinic.
骨缺损的治疗是骨科领域的一个难题。缺损部位局部骨组织的过度破坏会破坏血供,导致骨再生不足,进而导致延迟愈合甚至不愈合。为了解决这个问题,在本研究中,我们将淫羊藿苷掺入海藻酸盐/矿化胶原(AMC)水凝胶中,然后将载药水凝胶置于3D打印多孔钛合金(AMCI/PTi)支架的孔隙中,制备出具有促进血管生成和骨再生双重功能的生物活性支架。实验结果表明,ACMI/PTi支架具有合适的力学性能、持续释药功能和优异的生物相容性。释放的淫羊藿苷和矿化胶原(MC)协同促进血管生成和成骨分化。植入兔桡骨缺损处后,复合支架在促进骨修复方面显示出令人满意的效果。因此,这种复合双功能支架能够满足骨缺损治疗的需求,并为临床上大段骨缺损的修复提供一种有前景的策略。