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Biocompatibility of calcium phosphate bone cement with optimized mechanical properties

机译:具有最佳机械性能的磷酸钙骨水泥的生物相容性

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摘要

The broad aim of this work was to investigate and optimize the properties of calcium phosphate bone cements (CPCs) for use in vertebroplasty to achieve effective primary fixation of spinal fractures. The incorporation of collagen, both bovine and from a marine sponge (Chondrosia reniformis), into a CPC was investigated. The biological properties of the CPC and collagen–CPC composites were assessed in vitro through the use of human bone marrow stromal cells. Cytotoxicity, proliferation, and osteoblastic differentiation were evaluated using lactate dehydrogenase, PicoGreen, and alkaline phosphatase activity assays, respectively. The addition of both types of collagen resulted in an increase in cytotoxicity, albeit not to a clinically relevant level. Cellular proliferation after 1, 7, and 14 days was unchanged. The osteogenic potential of the CPC was reduced through the addition of bovine collagen but remained unchanged in the case of the marine collagen. These findings, coupled with previous work showing that incorporation of marine collagen in this way can improve the physical properties of CPCs, suggest that such a composite may offer an alternative to CPCs in applications where low setting times and higher mechanical stability are important. © 2015 The Authors. Journal of Biomedical Materials Research Part B: Applied Biomaterials Published by Wiley Periodicals, Inc. 104B:308–315, 2015.
机译:这项工作的主要目的是研究和优化用于椎体成形术的磷酸钙骨水泥(CPC)的性能,以实现对脊柱骨折的有效初步固定。研究了将牛和海洋海绵(Chondrosia reniformis)中的胶原蛋白掺入CPC的情况。通过使用人类骨髓基质细胞,体外评估了CPC和胶原蛋白-CPC复合材料的生物学特性。分别使用乳酸脱氢酶,PicoGreen和碱性磷酸酶活性测定法评估细胞毒性,增殖和成骨细胞分化。两种胶原蛋白的添加均导致细胞毒性增加,尽管没有达到临床相关水平。 1、7和14天后的细胞增殖没有变化。通过添加牛胶原蛋白可以降低CPC的成骨潜力,但对于海洋胶原蛋白,则保持不变。这些发现以及先前的工作表明,以这种方式掺入海洋胶原蛋白可以改善CPC的物理特性,表明这种复合材料可以在低凝结时间和较高机械稳定性至关重要的应用中提供CPC的替代品。 ©2015作者。生物医学材料研究杂志B部分:应用生物材料,由Wiley Periodicals,Inc.发布104B:308–315,2015年。

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