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Biocompatibility of calcium phosphate bone cement with optimised mechanical properties: an in vivo study

机译:具有最佳机械性能的磷酸钙骨水泥的生物相容性:一项体内研究

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摘要

This work establishes the in vivo performance of modified calcium phosphate bone cements for vertebroplasty of spinal fractures using a lapine model. A non-modified calcium phosphate bone cement and collagen-calcium phosphate bone cements composites with enhanced mechanical properties, utilising either bovine collagen or collagen from a marine sponge, were compared to a commercial poly(methyl methacrylate) cement. Conical cement samples (8 mm height × 4 mm base diameter) were press-fit into distal femoral condyle defects in New Zealand White rabbits and assessed after 5 and 10 weeks. Bone apposition and tartrate-resistant acid phosphatase activity around cements were assessed. All implants were well tolerated, but bone apposition was higher on calcium phosphate bone cements than on poly(methyl methacrylate) cement. Incorporation of collagen showed no evidence of inflammatory or immune reactions. Presence of positive tartrate-resistant acid phosphatase staining within cracks formed in calcium phosphate bone cements suggested active osteoclasts were present within the implants and were actively remodelling within the cements. Bone growth was also observed within these cracks. These findings confirm the biological advantages of calcium phosphate bone cements over poly(methyl methacrylate) and, coupled with previous work on enhancement of mechanical properties through collagen incorporation, suggest collagen-calcium phosphate bone cement composite may offer an alternative to calcium phosphate bone cements in applications where low setting times and higher mechanical stability are important.
机译:这项工作建立了改良的磷酸钙骨水泥使用lapine模型进行脊柱骨折椎体成形术的体内性能。使用牛胶原蛋白或海洋海绵中的胶原蛋白将具有增强的机械性能的非改性磷酸钙骨水泥和胶原蛋白-磷酸钙骨水泥复合材料与市售聚甲基丙烯酸甲酯水泥进行了比较。将锥形水泥样品(高度为8 mm×4 mm的基径)压入新西兰白兔的股骨远端distal突缺损中,并在5周和10周后进行评估。评估骨水泥和骨周围抗酒石酸酸性磷酸酶的活性。所有植入物均具有良好的耐受性,但磷酸钙骨水泥的骨附着度高于聚甲基丙烯酸甲酯骨水泥。胶原蛋白的掺入没有显示出炎症或免疫反应的迹象。磷酸钙骨水泥中形成的裂缝中存在抗酒石酸酸性磷酸酶阳性,这表明活性破骨细胞存在于植入物中,并在水泥中积极重塑。在这些裂缝中也观察到骨生长。这些发现证实了磷酸钙骨水泥相对于聚甲基丙烯酸甲酯的生物学优势,并且结合先前通过掺入胶原蛋白来增强机械性能的工作,表明胶原蛋白-磷酸钙骨水泥复合材料可以提供一种替代磷酸钙骨水泥的技术。凝结时间短和机械稳定性高的应用非常重要。

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