首页> 外文期刊>Tissue engineering, Part A >Positive effect on bone fusion by the combination of platelet-rich plasma and a gelatin β-tricalcium phosphate sponge: a study using a posterolateral fusion model of lumbar vertebrae in rats.
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Positive effect on bone fusion by the combination of platelet-rich plasma and a gelatin β-tricalcium phosphate sponge: a study using a posterolateral fusion model of lumbar vertebrae in rats.

机译:富含血小板的血浆和明胶β-磷酸三钙海绵的组合对骨融合的积极影响:一项使用大鼠腰椎后外侧融合模型的研究。

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摘要

We developed a novel method for bone fusion by combining platelet-rich plasma (PRP) and a gelatin β-tricalcium phosphate (β-TCP) sponge. The PRP is an autologous concentration of platelets that includes several growth factors. The gelatin β-TCP sponge comprises gelatin and β-TCP, thus enabling the sustained release of growth factors and osteoconduction. To evaluate this method, we generated a posterolateral fusion model of lumbar vertebrae in rats and divided it into five groups by implanting the following materials between transverse processes of vertebrae, (1) the gelatin β-TCP sponge with PRP (PRP sponge), (2) the gelatin β-TCP sponge with platelet-poor plasma, (3) gelatin hydrogel with PRP, (4) autologous iliac bone (autograft), and (5) no material was implanted as a control. The assessment of bone fusion by a radiographic assessment, a biomechanical test, microcomputed tomography, and histological evaluations demonstrated that there were no significant differences between the PRP sponge and the autograft groups regarding the osteogenic effect. Subsequent examinations revealed that no significant differences existed between the PRP sponge and the autograft groups in either biomechanical stiffness or the bone volume over time; whereas the radiographic and histological composition underwent similar changes in the fusion process. These results indicate that the PRP sponge could, therefore, be potentially useful as an attractive and less invasive method for bone fusion.
机译:我们通过结合富含血小板的血浆(PRP)和明胶β-磷酸三钙(β-TCP)海绵开发了一种新型的骨融合方法。 PRP是血小板的自体浓度,包括几个生长因子。明胶β-TCP海绵包含明胶和β-TCP,因此能够持续释放生长因子和骨传导。为了评估该方法,我们在大鼠腰椎后外侧融合模型中建立了模型,并将以下材料植入椎骨横向过程之间将其分为五组,(1)明胶β-TCP海绵与PRP(PRP海绵),( 2)具有贫血小板血浆的明胶β-TCP海绵;(3)具有PRP的明胶水凝胶;(4)自体骨(自体移植);以及(5)没有植入任何材料作为对照。通过影像学评估,生物力学测试,微型计算机断层扫描和组织学评估对骨融合进行评估,结果表明,PRP海绵和自体移植组在成骨作用方面无显着差异。随后的检查显示,随着时间的推移,PRP海绵和自体移植组之间的生物力学刚度或骨量均无显着差异。而射线和组织学组成在融合过程中发生了类似的变化。这些结果表明,PRP海绵可以潜在地用作有吸引力且侵入性较小的骨融合方法。

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