首页> 美国卫生研究院文献>International Journal of Medical Sciences >Combination of Heel-strike like Mechanical Loading with Deproteinized Cancellous Bone Scaffold Implantation to Repair Segmental Bone Defects in Rabbits
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Combination of Heel-strike like Mechanical Loading with Deproteinized Cancellous Bone Scaffold Implantation to Repair Segmental Bone Defects in Rabbits

机译:机械载荷后跟打击与脱蛋白松质骨支架植入术相结合修复兔节段性骨缺损

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摘要

Under physiological conditions bone defects often occur at mechanical load bearing sites and bone substitutes used for regeneration should be similarly subjected to mechanical loading stress. In this study, we investigated whether a novel heel-strike like mechanical loading method can be used as a complementary therapy to promote bone regeneration following bone substitute grafting. To test this, three groups of rabbits with segmental bone defects in the tibia were implanted with bovine deproteinized cancellous bone scaffold (DCBS), with one group also receiving heel-strike like mechanical loading generated by a rap stress stimulator. From weeks 4-12 post-operation X-ray and micro-CT scanning showed that rabbits receiving combination therapy had significantly more callus at the bone defect. Moreover, bone defects in the combination group were completely replaced with new bone at week 12, while the DCBS implantation alone group healed only partially and rabbits receiving neither DCBS nor mechanical loading developed only small calluses throughout the observation period. Analysis of micro-CT scanning results demonstrated that new bone density in the combination group was significantly higher than the DCBS only group at weeks 4 and 12 (p<0.05). H&E staining results also indicated a significantly higher percentage of new bone in the bone defect area and a lower percentage of residual scaffold in the combination group compared to the DCBS only group (p<0.05). Thus, this heel-strike like mechanical loading method appears to accelerate bone regeneration following substitute implantation by restoring a local mechanical loading environment in segmental bone defects.
机译:在生理条件下,骨骼缺陷通常发生在机械负荷部位,用于再生的骨骼替代品应同样承受机械负荷应力。在这项研究中,我们调查了一种新型的类似后跟打击的机械加载方法是否可以用作补充疗法,以促进替代骨移植后的骨再生。为了测试这一点,将三组胫骨节段性骨缺损的兔子植入了牛脱蛋白的松质骨支架(DCBS),其中一组还接受了说唱应力刺激器产生的机械冲击等跟部撞击。术后4-12周,X射线和显微CT扫描显示,接受联合治疗的兔子的骨缺损处有更多的愈伤组织。此外,组合组的骨缺损在第12周时完全被新骨替代,而单独的DCBS植入组仅部分愈合,并且在整个观察期内,既不接受DCBS也不接受机械负荷的兔子只出现了小老茧。显微CT扫描结果分析表明,在第4周和第12周,组合组的新骨密度显着高于仅DCBS组(p <0.05)。 H&E染色结果还表明,与仅使用DCBS的组相比,组合组的骨缺损区域的新骨百分比显着较高,而残余支架的百分比较低(p <0.05)。因此,这种类似后跟打击的机械加载方法似乎通过在节段性骨缺损中恢复局部机械加载环境来加快替代物植入后的骨再生。

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