[Formation of calcium phosphate crystals in pseudophysiological solution by SiC Whisker reinforced glass ceramics. Effect of Phosvitin on nucleation].

T Yuge
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Abstract

The effect of the phosphorylated protein, phosvitin, on the formation of the calcium phosphate crystal was examined in metastable calcium phosphate solution. Addition of glass ceramics caused consumption of hydrochloric acid, as a result of the dissolution of metal oxides. The activities of dissolution and nucleation were both high in the case of CPS-SiC. Phosvitin affected only the nucleation process, not the dissolution process. The decrease of phosvitin concentration after the addition of materials demonstrated adsorption of phosvitin by the material surface. The thermodynamic stability of solution after several days maintained equilibrium against tricalcium phosphate (TCP) and especially against octacalcium phosphate (OCP). From these results, it is concluded that glass ceramic implants have potential to stimulate hydroxyapatite formation, even in the presence of matrix substances.

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碳化硅晶须增强玻璃陶瓷在假生理溶液中形成磷酸钙晶体。磷光素对成核的影响[j]。
在亚稳态磷酸钙溶液中研究了磷酸化蛋白磷维素对磷酸钙晶体形成的影响。由于金属氧化物的溶解,玻璃陶瓷的加入引起盐酸的消耗。CPS-SiC的溶解和成核活性均较高。光维素只影响成核过程,不影响溶解过程。材料加入后磷维素浓度降低,说明材料表面对磷维素有吸附作用。几天后,溶液对磷酸三钙(TCP),特别是对磷酸八钙(OCP)的热力学稳定性保持平衡。从这些结果可以得出结论,即使在基质物质存在的情况下,玻璃陶瓷植入物也有可能刺激羟基磷灰石的形成。
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