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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >The use of brushite calcium phosphate cement for enhancement of bone-tendon integration in an anterior cruciate ligament reconstruction rabbit model.
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The use of brushite calcium phosphate cement for enhancement of bone-tendon integration in an anterior cruciate ligament reconstruction rabbit model.

机译:磷酸盐磷酸钙水泥的用途来增强前十字韧带重建兔模型中的骨肌腱整合。

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摘要

This study was designed to investigate the osteoconductivity and bioresorption of brushite calcium phosphate cement (CPC) in bone-tendon interface healing after anterior cruciate ligament (ACL) reconstruction. Surgical reconstruction using grafted tendon in bone tunnel was performed bilaterally in 28 skeletal mature rabbits. Brushite CPC was implanted between grafted tendon and bone tunnel of one limb with the contralateral one as the control. A batch of 14 rabbits was sacrificed at 6 and 12 weeks, respectively, after surgery. At each time point, six rabbits were used for micro-CT and subsequent histological examinations, whereas the remaining eight rabbits were used for pull-out testing. The components of brushite CPC-dicalcium phosphate dihydrate matrix degraded rapidly with beta-tricalcium phosphate granules left for guiding new bone formation. Brushite CPC augmented the peri-tendon bone volume and promoted bone growth into the healing interface. The ultimate strength and stiffness of the graft-tunnel complexes on experimental side was higher than that of the control by 117% and 102%, respectively, at 6 weeks postoperatively (p < 0.05 for both). The use of brushite CPC caused a paradigm shift in failure mode from intra-tunnel to intra-articular portion at 12 weeks postoperatively (p = 0.013). Brushite CPC significantly enhanced the bone-tendon integration after ACL reconstruction, which provided a scientific basis for clinical application.
机译:本研究旨在探讨骨肌腱界面愈合骨肌腱界面愈合(ACL)重建后的骨肌腱界面愈合中的骨导电性和生物吸收。在28个骨骼成熟的兔中双侧进行使用骨隧道中接枝肌腱的手术重建。用对侧一个人的一个肢体的嫁接肌腱和骨隧道植入黑铅矿CPC。在手术后,分别在6和12周处处死一批14个兔子。在每个时间点,六只兔子用于微型CT和随后的组织学检查,而剩余的八只兔子用于拉出测试。用β-三钙颗粒留下来引导新骨形成的β-三钙颗粒,磷酸酯CPC-二巯二水合物基质的组分降解。 Brushite CPC增强了Peri腱骨体积并促进了骨骼生长到愈合界面。实验侧的移植隧道复合物的最终强度和刚度分别高于术后6周的对照117%和102%的对照(两者两者P <0.05)。使用黑石CPC在术后12周内从隧道到内关节内部的故障模式导致划线变化(P = 0.013)。 Brushite CPC显着增强了ACL重建后的骨骼肌腱积分,为临床应用提供了科学依据。

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