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Bone-like forming ability of apatite-wollastonite glass ceramic

机译:磷灰石-硅灰石玻璃陶瓷的骨样形成能力

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摘要

This research describes the preparation, characterisation and in vitro behavior of a bioactive glass ceramic containing 44.8 wt% apatite, 28.0 wt% wollastonite-2 M and 27.2 wt% of amorphous phase. The biomaterial was obtained by a specific thermal cycle process that caused the devitrification of the Ca_3(PO_4)_2-CaSiO_3 binary system's stoichiometric eutectic composition. Overall, the material combines the properties of a resorbable Si-Ca-rich glass, in addition to bioactive properties of wollastonite and apatite phases. The bioactivity of this material was studied by soaking the samples in a simulated body fluid (SFB) for 3, 7, 14 and 21 days at 36.5 °C. During the soaking, the amorphous phase and also wollastonite-2 M phase underwent steady dissolution by releasing Si and Ca ions into the SBF medium. After 7 days, a porous hydroxy-carbonate apatite (HCA) layer was formed at the SBF-glass ceramic interface. The micro-nanostructured apatite-wollastonite-2M glass ceramics with improved mechanical properties, in comparison with the parent glass, could serve as a promising platform for hard tissue regeneration.
机译:这项研究描述了含有44.8 wt%磷灰石,28.0 wt%硅灰石2 M和27.2 wt%非晶相的生物活性玻璃陶瓷的制备,表征和体外行为。该生物材料是通过特定的热循环过程获得的,该过程导致Ca_3(PO_4)_2-CaSiO_3二元系统的化学计量共晶成分失透。总体而言,该材料不仅具有硅灰石相和磷灰石相的生物活性,而且还具有可吸收Si-Ca的可吸收玻璃的特性。通过将样品在36.5°C下的模拟体液(SFB)中浸泡3、7、14和21天来研究这种材料的生物活性。在浸泡过程中,无定形相以及硅灰石2 M相通过将Si和Ca离子释放到SBF介质中而稳定地溶解。 7天后,在SBF-玻璃陶瓷界面处形成了多孔羟基碳酸盐磷灰石(HCA)层。与母体玻璃相比,具有改善的机械性能的微纳米结构的磷灰石-硅灰石-2M玻璃陶瓷可以用作硬组织再生的有前途的平台。

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