Biomimetic evaluation of β tricalcium phosphate prepared by hot isostatic pressing.

Biomatter Pub Date : 2012-07-01 DOI:10.4161/biom.21377
Mihaela Mateescu, Emmanuelle Rguitti, Arnaud Ponche, Michel Descamps, Karine Anselme
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引用次数: 6

Abstract

Two types of completely densified β-TCP tablets were synthesized from a stoichiometric β-TCP powder. The first ones (TCP) were conventionally sintered, while the second ones (TCP-T) were sintered and treated by hot isostatic process (HIP). The HIP produced completely densified materials with relative densities greater than 99.9% and a transparent appearance of tablets. Samples were immersed in culture medium with (CM) or without serum (NCM) in static and dynamic conditions for a biomimetic evaluation. Similarly, SaOs-2 cells were cultured on samples in a static or dynamic flow perfusion system. The results of surface transformation in absence of cells showed that the dynamic condition increased the speed of calcium phosphate precipitations compared with the static condition. The morphology of precipitates was different with nature of tablets. The immersion in CM did impede this precipitation. XPS analysis of TCP-T tablets showed the presence of hydroxyapatite (HA) precipitates after incubation in NCM while octacalcium phosphate (OCP) precipitates were formed after incubation in CM. The analysis of the response of SaOs-2 cells on surfaces showed that the two types of materials are biocompatible. However, the dynamic mode of culture stimulated the differentiation of cells. Finally, it appears that the HIP treatment of TCP produces highly densified and transparent samples that display a good in vitro biocompatibility in static and dynamic culture conditions. Moreover, an interesting result of this work is the relationship between the presence of proteins in the immersion medium and the quality of precipitates formed on hipped TCP surface.

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热等静压法制备β磷酸三钙的仿生性能评价。
以化学计量β-TCP粉末为原料,合成了两种完全致密化的β-TCP片剂。前者(TCP)采用常规烧结,后者(TCP- t)采用热等静压烧结处理。HIP制得相对密度大于99.9%的完全致密材料,片剂外观透明。在静态和动态条件下,将样品浸泡在有(CM)或不含血清(NCM)的培养基中进行仿生学评价。同样,SaOs-2细胞在静态或动态血流灌注系统中在样品上培养。在没有细胞的情况下,表面转化的结果表明,动态条件下磷酸钙的沉淀速度比静态条件下更快。不同性质的片剂析出物形态不同。浸没在CM中确实阻碍了这种降水。XPS分析显示,TCP-T片在NCM中孵育后存在羟基磷灰石(HA)沉淀,而在CM中孵育后形成磷酸八钙(OCP)沉淀。对SaOs-2细胞在表面的反应分析表明,这两种材料具有生物相容性。而动态培养模式刺激了细胞的分化。最后,TCP的HIP处理似乎产生了高密度和透明的样品,在静态和动态培养条件下显示出良好的体外生物相容性。此外,这项工作的一个有趣的结果是浸泡介质中蛋白质的存在与在凸起的TCP表面形成的沉淀质量之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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