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首页> 外文期刊>Journal of orthopaedic research >ACL reconstruction using bone-tendon-bone graft engineered from the semitendinosus tendon by injection of recombinant BMP-2 in a rabbit model.
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ACL reconstruction using bone-tendon-bone graft engineered from the semitendinosus tendon by injection of recombinant BMP-2 in a rabbit model.

机译:通过在兔模型中注射重组BMP-2,使用半腱肌腱工程化的骨腱-骨移植物重建ACL。

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摘要

We attempted to generate a bone-tendon-bone structure by injecting human-type recombinant human bone morphogenetic protein-2 (rhBMP-2) into the semitendinosus tendon, and an anterior cruciate ligament (ACL) defect was reconstructed by grafting the engineered bone-tendon-bone graft. Two ossicles with a separation distance of 1 cm were generated within the left semitendinosus tendon of a rabbit 6 weeks after the injection of rhBMP-2 (15 microg at each site). The engineered bone-tendon-bone graft was transplanted in order to reconstruct the ACL by passing the graft through the bone tunnels. In the control group, the ACL was reconstructed with the semitendinosus tendon without BMP-2 using the same methods as those used in the experimental group. The animals were harvested at 4 or 8 weeks after surgery and examined by radiographic, histological, and biomechanical methods. In the experimental group, ossicles in the bone-tendon-bone graft were successfully integrated into the host bone of the femur and tibia. Histological analysis revealed that characteristic features identical to the normal direct insertion morphology had been restored. Biomechanical pull-out testing showed that the ultimate failure load and stiffness of the reconstructed ACL in the experimental group were significantly higher than those in the control group at both 4 and 8 weeks (p < 0.05). These results indicate the potential of regenerative reconstruction of the ACL, and the reconstruction resulted in the restoration of morphology and function equivalent to those of the normal ACL.
机译:我们试图通过向半腱肌腱注射人型重组人骨形态发生蛋白2(rhBMP-2)来生成骨腱结构,并通过移植工程骨来重建前交叉韧带(ACL)缺损。肌腱-骨移植。注射rhBMP-2(每个部位15微克)6周后,在兔的左半腱肌腱内产生了两个间隔为1 cm的小骨。移植了工程化的骨腱-骨移植物,以便通过使移植物穿过骨隧道来重建ACL。在对照组中,使用与实验组相同的方法,用不带有BMP-2的半腱肌腱重建ACL。手术后第4或8周收获动物,并通过射线照相,组织学和生物力学方法进行检查。在实验组中,骨-腱-骨移植物中的小骨成功整合到股骨和胫骨的宿主骨中。组织学分析表明,已恢复了与正常直接插入形态相同的特征。生物力学拔出测试显示,在第4周和第8周,实验组重建的ACL的最终破坏载荷和刚度均显着高于对照组(p <0.05)。这些结果表明了ACL的再生重建的潜力,并且该重建导致形态和功能的恢复与正常ACL的等效。

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