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Biphasic calcium phosphate with submicron surface topography in an Ovine model of instrumented posterolateral spinal fusion

机译:仪器化后外侧脊柱融合的绵羊模型中具有亚微米表面形貌的双相磷酸钙

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摘要

As spinal fusions require large volumes of bone graft, different bone graft substitutes are being investigated as alternatives. A subclass of calcium phosphate materials with submicron surface topography has been shown to be a highly effective bone graft substitute. In this work, a commercially available biphasic calcium phosphate (BCP) with submicron surface topography (MagnetOs; Kuros Biosciences BV) was evaluated in an Ovine model of instrumented posterolateral fusion. The material was implanted stand‐alone, either as granules (BCPgranules) or as granules embedded within a fast‐resorbing polymeric carrier (BCPputty) and compared to autograft bone (AG). Twenty‐five adult, female Merino sheep underwent posterolateral fusion at L2‐3 and L4‐5 levels with instrumentation. After 6, 12, and 26 weeks, outcomes were evaluated by manual palpation, range of motion (ROM) testing, micro‐computed tomography, histology and histomorphometry. Fusion assessment by manual palpation 12 weeks after implantation revealed 100% fusion rates in all treatment groups. The three treatment groups showed a significant decrease in lateral bending at the fusion levels at 12 weeks (P < 0.05) and 26 weeks (P < 0.001) compared to the 6 week time‐point. Flexion‐extension and axial rotation were also reduced over time, but statistical significance was only reached in flexion‐extension for AG and BCPputty between the 6 and 26 week time‐points (P < 0.05). No significant differences in ROM were observed between the treatment groups at any of the time‐points investigated. Histological assessment at 12 weeks showed fusion rates of 75%, 92%, and 83% for AG, BCPgranules and BCPputty, respectively. The fusion rates were further increased 26 weeks postimplantation. Similar trends of bone growth were observed by histomorphometry. The fusion mass consisted of at least 55% bone for all treatment groups 26 weeks after implantation. These results suggest that this BCP with submicron surface topography, in granules or putty form, is a promising alternative to autograft for spinal fusion.
机译:由于脊柱融合术需要大量的植骨,因此正在研究不同的植骨替代品。具有亚微米表面形貌的一类磷酸钙材料已被证明是一种高效的骨移植替代物。在这项工作中,在仪器化后外侧融合的Ovine模型中评估了具有亚微米表面形貌(MagnetOs; Kuros Biosciences BV)的市售双相磷酸钙(BCP)。该材料以颗粒(BCP颗粒)或嵌入快速吸收聚合物载体(BCPputty)中的颗粒形式独立植入,并与自体骨(AG)进行了比较。 25只成年雌性美利奴绵羊在仪器中分别在L2-3和L4-5水平进行后外侧融合。在第6、12和26周后,通过手动触诊,运动范围(ROM)测试,微型计算机断层扫描,组织学和组织形态学评估结局。植入后12周通过触诊进行融合评估,发现所有治疗组的融合率均为100%。与6周的时间点相比,三个治疗组在12周(P <0.05)和26周(P <0.001)的融合水平下显示了横向弯曲的显着降低。屈伸和轴向旋转也随着时间的推移而减少,但仅在6周和26周的时间点之间,AG和BCPputty的屈伸达到统计学意义(P <0.05)。在任何调查的时间点上,治疗组之间的ROM均无显着差异。 12周时的组织学评估显示,AG,BCP颗粒和BCPputty的融合率分别为75%,92%和83%。植入后26周,融合率进一步提高。通过组织形态学观察到相似的骨生长趋势。植入后26周,所有治疗组的融合块均包含至少55%的骨。这些结果表明,这种具有亚微米表面形貌的颗粒状或油灰状的BCP是自体移植脊柱融合的有希望的替代方法。

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