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首页> 外文期刊>Journal of Orthopaedic Surgery Research >Injectable and compression-resistant low-viscosity polymer/ceramic composite carriers for rhBMP-2 in a rabbit model of posterolateral fusion: a pilot study
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Injectable and compression-resistant low-viscosity polymer/ceramic composite carriers for rhBMP-2 in a rabbit model of posterolateral fusion: a pilot study

机译:兔后外侧融合模型中rhBMP-2的可注射且抗压低粘度聚合物/陶瓷复合载体的初步研究

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BackgroundThe challenging biological and mechanical environment of posterolateral fusion (PLF) requires a carrier that spans the transverse processes and resists the compressive forces of the posterior musculature. The less traumatic posterolateral approach enabled by minimally invasive surgical techniques has prompted investigations into alternative rhBMP-2 carriers that are injectable, settable, and compression-resistant. In this pilot study, we investigated injectable low-viscosity (LV) polymer/composite bone grafts as compression-resistant carriers for rhBMP-2 in a single-level rabbit PLF model. MethodsLV grafts were augmented with ceramic microparticles: (1) hydrolytically degradable bioactive glass (BG), or (2) cell-degradable 85% β-tricalcium phosphate/15% hydroxyapatite (CM). Material properties, such as pore size, viscosity, working time, and bulk modulus upon curing, were measured for each LV polymer/ceramic material. An in vivo model of posterolateral fusion in a rabbit was used to assess the grafts’ capability to encourage spinal fusion. ResultsThese materials maintained a working time between 9.6 and 10.3?min, with a final bulk modulus between 1.2 and 3.1?MPa. The LV polymer/composite bone grafts released 55% of their rhBMP-2 over a 14-day period. As assessed by manual palpation in vivo, fusion was achieved in all ( n =?3) animals treated with LV/BG or LV/CM carriers incorporating 430?μg rhBMP-2/ml. Images of μCT and histological sections revealed evidence of bone fusion near the transverse processes. ConclusionThis study highlights the potential of LV grafts as injectable and compression-resistant rhBMP-2 carriers for posterolateral spinal fusion.
机译:背景技术充满挑战性的后外侧融合术(PLF)的生物学和机械环境需要一种跨横向过程并抵抗后肌肉组织压缩力的载体。通过微创外科手术技术实现的创伤较小的后外侧入路,促使人们对可注射,可固化和抗压的替代性rhBMP-2载体进行研究。在这项前期研究中,我们研究了可注射的低粘度(LV)聚合物/复合骨移植物作为单水平兔PLF模型中rhBMP-2的抗压载体。方法LV移植物用陶瓷微粒增强:(1)可水解降解的生物活性玻璃(BG),或(2)细胞可降解的85%β-磷酸三钙/ 15%羟基磷灰石(CM)。对于每种LV聚合物/陶瓷材料,测量材料性能,例如孔径,粘度,工作时间和固化时的体积模量。使用兔后外侧融合的体内模型来评估移植物鼓励脊柱融合的能力。结果这些材料的工作时间保持在9.6和10.3?min之间,最终的体积模量在1.2和3.1?MPa之间。 LV聚合物/复合骨移植物在14天内释放了55%的rhBMP-2。通过体内手动触诊评估,在所有接受430μgrhBMP-2 / ml LV / BG或LV / CM载体处理的动物(n =?3)中均实现了融合。 μCT和组织切片的图像显示了横突附近骨融合的证据。结论:这项研究强调了LV移植物作为可注射且抗压的rhBMP-2载体在后外侧脊柱融合中的潜力。

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