Li Ji, Li Zhongli, Wang Qi, Shi Yueyi, Li Wei, Fu Yangmu, Jin Gong
Department of Orthopedics, General Hospital of PLA No. 28 Fuxing Road, Haidian District Beijing 100853 China
Department of Orthopedics, Characteristic Medical Center of PAP Tianjin 300162 China.
RSC Adv. 2019 Jan 11;9(3):1541-1550. doi: 10.1039/c8ra10200g. eCollection 2019 Jan 9.
A well-controlled powder sintering technique was used to fabricate porous Ti6Al4V scaffold. The thermosensitive chitosan thioglycolic acid (CS-TA) hydrogel was used as a carrier to inject recombinant human bone morphogenetic protein-2 (rhBMP-2) microspheres into pores of the Ti6Al4V scaffold at 37 °C, and then the porous Ti6Al4V/rhBMP-2 loaded hydrogel composite was obtained. The bare Ti6Al4V scaffold was used as the control. The characteristics and mechanical properties of the scaffold, rheological properties of the hydrogels and the rhBMP-2 loaded hydrogel, the release of the rhBMP-2 loaded hydrogel, and the biological properties of the two types of samples were evaluated by and tests. Results indicated that the sintered porous Ti6Al4V had high porosity, large pore size with good mechanical properties. The hydrogel and rhBMP-2 loaded hydrogel showed thermosensity. The rhBMP-2 loaded hydrogel showed a stable and extended release profile without too high burst release of rhBMP-2. Both groups showed good biocompatibility and osteogenic ability. However, according to the results of cell tests and implantation, the group with rhBMP-2 loaded hydrogel had significantly higher cell proliferation rate, faster bone growth speed, and more bone ingrowth at every time point. Therefore, the sintered porous Ti6Al4V scaffolds incorporated with rhBMP-2 microspheres and CS-TA hydrogel was effective in enhancing the bone regeneration, and prospects a good candidate for application in orthopedics.
采用一种控制良好的粉末烧结技术制备多孔Ti6Al4V支架。将热敏壳聚糖巯基乙酸(CS-TA)水凝胶作为载体,于37℃将重组人骨形态发生蛋白-2(rhBMP-2)微球注入Ti6Al4V支架的孔隙中,从而获得负载rhBMP-2的多孔Ti6Al4V/水凝胶复合材料。将裸露的Ti6Al4V支架作为对照。通过……测试对支架的特性和力学性能、水凝胶及负载rhBMP-2水凝胶的流变学性能、负载rhBMP-2水凝胶的释放情况以及两种样品的生物学性能进行评估。结果表明,烧结后的多孔Ti6Al4V具有高孔隙率、大孔径且力学性能良好。水凝胶和负载rhBMP-2的水凝胶表现出热敏性。负载rhBMP-2的水凝胶呈现出稳定且持续的释放曲线,rhBMP-2的突释不会过高。两组均表现出良好的生物相容性和成骨能力。然而,根据细胞测试和植入结果,负载rhBMP-2水凝胶组在每个时间点的细胞增殖率显著更高、骨生长速度更快且骨长入更多。因此,结合rhBMP-2微球和CS-TA水凝胶的烧结多孔Ti6Al4V支架在促进骨再生方面是有效的,有望成为骨科应用的良好候选材料。