首页> 外文期刊>Journal of biomedical materials research, Part A >Enhancement of bone formation by BMP-7 transduced MSCs on biomimetic nano-hydroxyapatite/polyamide composite scaffolds in repair of mandibular defects.
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Enhancement of bone formation by BMP-7 transduced MSCs on biomimetic nano-hydroxyapatite/polyamide composite scaffolds in repair of mandibular defects.

机译:在仿生纳米羟基磷灰石/聚酰胺复合支架上,通过BMP-7转导的MSC增强骨形成,修复下颌骨缺损。

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This study was to evaluate enhanced bone formation by bone morphogenetic protein-7 (BMP-7) transduced MSCs on nano-hydroxyapatite/polyamide (n-HA/PA) composite scaffolds for bone tissue engineering in repair of mandibular defect. n-HA/PA scaffolds were prepared and rabbit MSCs were separated and expanded; and then infected with adenoviral-mediated BMP-7 in vitro. The MSCs-BMP-7 and MSCs were seeded on the porous scaffolds. Scaffold/MSCs-BMP-7 constructs and scaffold/MSCs constructs were implanted in the defects of rabbits' mandible as the experimental groups A (n = 18) and groups B (n = 18), respectively, the pure scaffolds were implanted as controls (group C, n = 18). Six animals were sacrificed at 4-, 8-, and 16-week postimplantation, respectively. Their mandibles were removed and processed for radiographic, biomechanical tests, histological, and histomorphometric analysis. Group A animals showed greater bone formation and earlier mineralization than group B at 4- and 8-week postimplantation and similarly group B more than group C. However, no difference was found among three groups at 16-week postimplantation. The results of this study suggest that BMP-7 transduced MSCs-n-HA/PA composite could significantly accelerate bone formation in the implant at early stage. BMP-7 mediated ex vivo gene transfer based on MSCs as seed cells, combined with porous n-HA/PA as scaffolds for bone tissue engineering might be an alternative or supplemental approach to repair the mandibular defects.
机译:这项研究旨在评估通过骨形态发生蛋白7(BMP-7)转导的MSC在纳米羟基磷灰石/聚酰胺(n-HA / PA)复合支架上增强的骨形成,以修复下颌骨缺损。制备了n-HA / PA支架,分离并扩增了兔MSC。然后在体外用腺病毒介导的BMP-7感染。将MSCs-BMP-7和MSCs接种在多孔支架上。将支架/ MSCs-BMP-7构建体和支架/ MSCs构建体分别植入实验组A(n = 18)和B组(n = 18)的兔下颌骨缺损中,将纯支架植入作为对照(C组,n = 18)。在植入后4、8和16周分别处死六只动物。将他们的下颌骨取出并进行放射线照相,生物力学测试,组织学和组织形态分析。在植入后4周和8周,A组动物比B组具有更大的骨形成和矿化作用,相似地,B组比C组更多。但是,在植入后16周,三组动物之间没有差异。这项研究的结果表明,BMP-7转导的MSCs-n-HA / PA复合物可以显着加速早期植入物中的骨形成。 BMP-7介导的以MSCs为种子细胞的离体基因转移,结合多孔n-HA / PA作为骨组织工程的支架,可能是修复下颌缺损的替代方法或补充方法。

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