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Influence of osteocalcin and collagen I on the mechanical and biological properties of Biocement D

机译:骨钙素和胶原蛋白I对生物水泥D力学和生物学特性的影响

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In order to generate a calcium-phosphate bone cement as a transient replacement for bone defects, we modified Biocement D (Merck Biomaterial GmbH) containing mineralised collagen [1] with osteocalcin, the most abundant non-collageneous protein of bone. Osteocalcin was added to the cement paste during setting in order to control the crystallisation kinetics of hydroxyapatite (HAP) as well as to stimulate the interaction of osteoblasts and osteoclasts with the bone replacement material. Analysis by SEM and AFM shows, that the addition of osteocalcin causes a nanosize microstructure of the calcium cement, which can be explained by inhibited growth of HAP crystals. The fracture strength of the material decreased by incorporation of osteocalcin, pointing onto a higher defect concentration of the crystalline structure. The impact of osteocalcin onto the interaction of bone cells with HAP-Collagen I-cements was studied in a cell culture system using the human osteosarcoma cell line SAOS-2. Results suggest, that osteocalcin might possibly improve the initial adherence of osteoblast-like cells, whereas proliferation of the cells is not effected.
机译:为了产生磷酸钙骨水泥作为骨缺损的暂时替代物,我们用骨钙素(一种最丰富的骨非胶原蛋白)修饰了含有矿化胶原蛋白[1]的Biocement D(Merck Biomaterial GmbH)。在凝固过程中将骨钙蛋白添加到水泥浆中,以控制羟磷灰石(HAP)的结晶动力学以及刺激成骨细胞和破骨细胞与骨替代材料的相互作用。通过SEM和AFM的分析表明,骨钙素的添加导致钙水泥的纳米级微观结构,这可以通过抑制HAP晶体的生长来解释。通过掺入骨钙蛋白,材料的断裂强度降低,表明晶体结构的缺陷浓度更高。在使用人骨肉瘤细胞系SAOS-2的细胞培养系统中,研究了骨钙素对骨细胞与HAP-胶原I水泥相互作用的影响。结果表明,骨钙蛋白可能会改善成骨细胞样细胞的初始粘附,而细胞的增殖则不会受到影响。

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