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首页> 外文期刊>European spine journal >Efficacy of interspinous process lumbar fusion with recombinant human bone morphogenetic protein-2 delivered with a synthetic polymer and β-tricalcium phosphate in a rabbit model
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Efficacy of interspinous process lumbar fusion with recombinant human bone morphogenetic protein-2 delivered with a synthetic polymer and β-tricalcium phosphate in a rabbit model

机译:棘突间腰椎融合与重组人骨形态发生蛋白-2(合成聚合物和β-磷酸三钙)一起递送的兔模型的疗效

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IntroductionAs a powerful bone-inducing cytokine, rhBMP-2 has been used as a bone graft substitute in combination with animal-derived collagen to achieve interbody or posterolateral spinal fusion. Successful interspinous process fusion using rhBMP-2 in combination with synthetic carrier materials would offer a safe, minimally invasive spinal fusion option for the treatment of spinal disorders. The aims of the present study were to achieve interspinous process fusion by implanting rhBMP-2-retaining degradable material instead of bone grafting and to evaluate efficacy for vertebral stabilization.Materials and methodsA polymer gel (200?mg), β-tricalcium phosphate powder (400?mg), and rhBMP-2 (0, 30, 60 or 120?μg) were mixed to generate a plastic implant, which was then placed during surgery to bridge the L5–6 interspinous processes of 58 rabbits. Control animals received implants either without rhBMP-2 or with autogenous bone chips from the iliac crest. L5–6 vertebrae were recovered 8?weeks postoperatively. Interspinous process fusion was evaluated by radiography, biomechanical bending test, intradiscal pressure (IDP) measurement, and histology.Results In bending tests, strength of fusion was significantly greater in BMP60 and BMP120 groups than in sham, BMP0, BMP30 or autogenous bone groups. IDP at L5–6 was significantly reduced in BMP60 and BMP120 groups compared to sham, BMP0, BMP30, and autograft groups. Histologically, coronal sections of the fusion mass showed a bone mass bridging both spinous processes.Conclusion Solid interspinous process fusion was achieved in rabbit models by 8?weeks after implanting the biodegradable bone-inducing material. These results suggest a potential new less-invasive option without bone grafting for the treatment of lumbar disorders...
机译:简介作为一种强大的骨诱导细胞因子,rhBMP-2已与动物衍生的胶原蛋白一起用作骨移植替代物,以实现椎间融合或后外侧脊柱融合。使用rhBMP-2与合成载体材料的成功的棘突间融合将为治疗脊柱疾病提供安全,微创的脊柱融合术。本研究的目的是通过植入保留rhBMP-2的可降解材料代替骨移植来实现棘突融合,并评估其对椎骨稳定的功效。材料和方法聚合物凝胶(200 mg),β-磷酸三钙粉(将400?mg和rhBMP-2(0、30、60或120?g)混合以产生塑料植入物,然后将其植入手术中,以桥接58只兔的L5-6棘突间。对照动物接受了不带有rhBMP-2或带有来自with的自体骨屑的植入物。术后8周恢复L5–6椎骨。结果:在弯曲试验中,BMP60和BMP120组的融合强度明显高于假手术,BMP0,BMP30或自体骨组,从而评估了棘突间融合的强度。与假手术,BMP0,BMP30和自体移植组相比,BMP60和BMP120组在L5–6的IDP显着降低。从组织学上看,融合块的冠状切片显示出桥接两个棘突的骨块。结论植入可生物降解骨诱导材料后8周,在兔模型中实现了坚固的棘突间融合。这些结果表明了一种无需骨移植即可治疗腰椎疾病的潜在新的无创治疗方案。

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