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Incorporation of Collagen in Calcium Phosphate Cements for Controlling Osseointegration

机译:将胶原蛋白掺入磷酸钙水泥中以控制骨整合

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摘要

In this study, we investigated the effect of supplementing a non-dispersive dicalcium phosphate-rich calcium phosphate bone cement (DCP-rich CPC) with type I collagen on in vitro cellular activities and its performance as a bone graft material. Varying amounts of type I collagen were added during the preparation of the DCP-rich CPC. In vitro cell adhesion, morphology, viability, and alkaline phosphatase (ALP) activity were evaluated using progenitor bone cells. Bone graft performance was evaluated via a rat posterolateral lumbar fusion model and osteointegration of the implant. New bone formations in the restorative sites were assessed by micro-computed tomography (micro-CT) and histological analysis. We found that the incorporation of collagen into the DCP-rich CPC was associated with increased cell adhesion, cell viability, and ALP activity in vitro. The spinal fusion model revealed a significant increase in bone regeneration. Additionally, better osseointegration was observed between the host bone and graft with the DCP-rich CPC supplemented with collagen than with the collagen-free DCP-rich CPC control graft. Furthermore, compared to the control graft, the results of micro-CT showed that a smaller amount of residual material was observed with the collagen-containing DCP-rich CPC graft compared with the control graft, which suggests the collagen supplement enhanced new bone formation. Of the different mixtures evaluated in this study (0.8 g DCP-rich CPC supplemented with 0.1, 0.2, and 0.4 mL type I collagen, respectively), DCP-rich CPC supplemented with 0.4 mL collagen led to the highest level of osteogenesis. Our results suggest that the DCP-rich CPC supplemented with collagen has potential to be used as an effective bone graft material in spinal surgery.
机译:在这项研究中,我们研究了使用I型胶原蛋白在不分散的富含磷酸氢二钙的磷酸钙磷酸钙骨水泥(富含DCP的CPC)中添加对体外细胞活性及其作为骨移植材料的性能的影响。在制备富含DCP的CPC期间添加了不同数量的I型胶原蛋白。使用祖骨细胞评估了体外细胞粘附,形态,活力和碱性磷酸酶(ALP)活性。通过大鼠后外侧腰椎融合模型和植入物的骨整合评估了骨移植物的性能。通过显微计算机断层扫描(micro-CT)和组织学分析评估修复部位的新骨形成。我们发现胶原蛋白掺入富含DCP的CPC与体外细胞粘附,细胞活力和ALP活性增加有关。脊柱融合模型显示骨骼再生显着增加。此外,与不含胶原蛋白的富含DCP的CPC对照移植物相比,富含DCP的CPC补充了胶原蛋白在宿主骨骼和移植物之间观察到更好的骨整合。此外,与对照移植相比,微CT结果显示,与对照移植相比,富含胶原的DCP的CPC移植观察到的残留物质更少,这表明胶原补充剂增强了新骨的形成。在这项研究中评估的不同混合物中(分别添加0.8 g富含DCP的CPC,0.1、0.2和0.4 mL I型胶原),富含DCP的CPC补充了0.4 mL胶原导致了最高的成骨水平。我们的研究结果表明,富含DCP的CPC补充了胶原蛋白,有潜力用作脊柱外科手术中的有效骨移植材料。

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