Metallic implants with a low effective modulus can provide early load-bearing and reduce stress shielding, which is favorable for increasing in vivo life-span. In this research, porous Ti6Al4V scaffolds with three pore sizes (300~400, 400~500, and 500~700âμm) were manufactured by Electron Beam Melting, with an elastic modulus range of 3.7 to 1.7âGPa. Cytocompatibility in vitro and osseointegration ability in vivo of scaffolds were assessed. hBMSCs numbers increased on all porous scaffolds over time. The group with intended pore sizes of 300 to 400âμm was significantly higher than that of the other two porous scaffolds at days 5 and 7. This group also had higher ALP activity at day 7 in osteogenic differentiation experiment. The scaffold with pore size of 300 to 400âμm was implanted into a 30-mm segmental defect of goat metatarsus. In vivo evaluations indicated that the depth of bone ingrowth increased over time and no implant dislocation occurred during the experiment. Based on its better cytocompatibility and favorable bone ingrowth, the present data showed the capability of the additive manufactured porous Ti6Al4V scaffold with an intended pore size of 300 to 400âμm for large segmental bone defects.
In vitro and in vivo study of additive manufactured porous Ti6Al4V scaffolds for repairing bone defects.
体外和体内研究增材制造的多孔Ti6Al4V支架在修复骨缺损中的应用
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作者:Li Guoyuan, Wang Lei, Pan Wei, Yang Fei, Jiang Wenbo, Wu Xianbo, Kong Xiangdong, Dai Kerong, Hao Yongqiang
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2016 | 起止号: | 2016 Sep 26; 6:34072 |
| doi: | 10.1038/srep34072 | 研究方向: | 骨科研究 |
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