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Effects of a perfusion bioreactor activated novel bone substitute in spine fusion in sheep

机译:灌注生物反应器激活的新型骨替代物在绵羊脊柱融合中的作用

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PurposeTo evaluate the effect of a large perfusion-bioreactor cell-activated bone substitute, on a two-level large posterolateral spine fusion sheep model.MethodsA 50?mm long porous biphasic-calcium–phosphate bone substitute reinforced with poly(d,l-lactide) and, activated with bone marrow derived mononuclear-cells (BMNC) was used. Eighteen sheep were divided into two groups and one group (n?=?9) had BMNC-activated bone substitutes and cell-free substitutes implanted. The second group (n?=?9) had autograft supplemented with BMNC and regular autograft implanted. The implant material was alternated between spine level L2–L3 and L4–L5 in both groups. MicroCT was used to compare the spine fusion efficacy and bone structure of the two groups as well as the implanted bone substitutes and non-implanted substitutes.ResultsAfter 4??months six sheep survived in both groups and we found five spine levels were fused when using activated bone substitute compared to three levels with cell-free bone substitute (p?=?0.25). Five sheep fused at both levels in the autograft group. A significant increased bone density (p??0.05) and anisotropy (p??0.05) was found in the group of activated bone substitutes compared to cell-free bone substitute and no difference existed on the other parameters. The implanted bone substitutes had a significant higher bone density and trabecular thickness than non-implanted bone substitutes, thus indicating that the PLA reinforced BCP had osteoconductive properties (p??0.05). No effect of the supplemented BMNC to autograft was observed. The autograft group had a significant higher bone density, trabecular thickness and degree of anisotropy than the implanted bone substitutes (p??0.05), but a lower connectivity density existed (p??0.05). This indicates that though the activated substitute might have a similar fusion efficacy to autograft, the fusion bridge is not of equal substance.ConclusionWe found that bioreactor-generated cell-based bone substitutes seemed superior in fusion ability when compared to cell-free bone substitute and comparable to autograft in fusion ability, but not in bone structure. This combined with the favorable biocompatible abilities and strength comparable to human cancellous bone indicates that it might be a suitable bone substitute in spine fusion procedures...
机译:目的评估大型灌注生物反应器细胞活化骨替代物对两级大型后外侧脊椎融合羊模型的影响。 ),并使用衍生自骨髓的单核细胞(BMNC)激活。将18只绵羊分为两组,一组(n≥9)植入了BMNC激活的骨替代物和无细胞替代物。第二组(n≥9)补充了BMNC的自体移植物并进行常规自体移植。两组患者的脊柱水平分别为L2-L3和L4-L5。用MicroCT比较两组的脊柱融合效果和骨结构,以及植入的骨替代物和未植入的替代物。结果4个月后,两组均存活了六只羊,使用时融合了五个脊椎水平活化的骨替代物与无细胞骨替代物的三个水平相比(p≥0.25)。自体移植组中有五只绵羊在两个级别上融合。与无细胞的骨替代物相比,活化的骨替代物组中的骨密度(p 0.05)和各向异性(p 0.05)显着增加,其他参数没有差异。植入的骨替代物具有比未植入的骨替代物显着更高的骨密度和小梁厚度,因此表明PLA增强的BCP具有骨传导性(p≤0.05)。没有观察到补充的BMNC对自体移植的影响。自体移植组的骨密度,小梁厚度和各向异性程度明显高于植入的骨替代物(p <0.05),但连接密度较低(p <0.05)。这表明尽管活化的替代物可能具有与自体移植相似的融合功效,但融合桥的物质并不相同。结论我们发现,与无细胞的骨替代物相比,生物反应器生成的基于细胞的骨替代物在融合能力上似乎更好。在融合能力上可与自体移植媲美,但在骨骼结构上却不尽相同。这与可与人的松质骨媲美的良好的生物相容性和强度相结合,表明它可能是脊柱融合手术中合适的骨替代物...

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