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Effects of sintering temperature, powder loading and ionic substitution on the dissolution property of apatite microspheres

机译:烧结温度,粉末载荷和离子取代对磷灰石微球溶出性的影响

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Silver, silicon co-substituted hydroxyapatite (Ag,Si-HA) was fabricated as microspheres for better control of the degradation rate. It is the aim of this work to study the effects of sintering temperature, powder loading, and ionic substitution on the dissolution property of Ag,Si-HA microspheres. Sintering at 1150 degrees C resulted in the formation of calcium oxide, causing disintegration of the microspheres. Microspheres sintered at 800 degrees C were the most stable, maintaining its structural integrity during the 14 days of immersion in Dulbecco's phosphate-buffered saline, along with the dissolution of calcium ions. Microspheres became smaller when powder loading was reduced from 40 to 20 wt-%, which promoted the release of Ca(2+)ions. With Ag and Si co-substitution, the dissolution of microspheres was increased too. Results demonstrated that surface area of the microspheres played a role in affecting the rate of dissolution, and could be influenced by the sintering temperature and powder loading.
机译:银,硅共取代的羟基磷灰石(Ag,Si-Ha)作为微球制备,以便更好地控制降解速率。这项工作的目的是研究烧结温度,粉末载量和离子取代对Ag,Si-HA微球的溶出性的影响。在1150℃下烧结导致氧化钙的形成,导致微球的崩解。在800℃下烧结的微球是最稳定的,在Dulbecco的磷酸盐缓冲盐水浸泡的14天内保持其结构完整性,以及钙离子的溶解。当粉末载荷从40〜20重量%降低时,微球变小,促进了Ca(2+)离子的释放。通过AG和Si协同取代,Microshes的溶解也增加。结果表明,微球的表面积在影响溶解速率方面发挥了作用,并且可以受烧结温度和粉末负载的影响。

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