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In Vitro Investigation of Bioactive Glass-Ceramic Composites Based on Biogenic Hydroxyapatite or Synthetic Calcium Phosphates

机译:基于生物羟基磷灰石或合成磷酸钙的生物活性玻璃陶瓷复合材料的体外研究

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摘要

This in vitro investigation of the behavior of two types of calcium phosphate glass ceramics on the basis of phosphates of biogenic or synthetic origin prepared from initial mixtures with different particle size has revealed that some different factors affect the behavior, namely the phase composition of composite, fraction of open porosity, and average diameter of pore channels. It was established that the solubility of the composites on the basis of synthetic calcium phosphates and glass after 2 and 7 days contact with saline composites is the highest among the materials under study. First of all, this fact is related to the peculiarities of their phase composition, high fraction of open porosity, and high permeability. As for biogenic hydroxyapatite/glass materials, their solubility is several times lower in spite of close total porosity. The particle size of initial mixture practically does not affect the material solubility; the latter is only slightly lower for smaller particles.
机译:这项对两种类型的磷酸钙玻璃陶瓷的行为进行的体外研究,是基于由具有不同粒径的初始混合物制备的生物或合成来源的磷酸盐制备的,发现一些不同的因素会影响这种行为,即复合物的相组成,孔隙率的分数和孔道的平均直径。已经确定,在与盐类复合材料接触2天和7天后,基于合成磷酸钙和玻璃的复合材料的溶解度最高。首先,这一事实与它们的相组成的特殊性,高孔隙率和高渗透率有关。对于生物羟基磷灰石/玻璃材料,尽管总孔隙率接近,但它们的溶解度却低几倍。初始混合物的粒径实际上不影响材料的溶解度;对于较小的颗粒,后者仅稍低一些。

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