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Calcium aluminate cement-based compositions for biomaterial applications

机译:用于生物材料的铝酸钙水泥基组合物

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摘要

Calcium aluminate cement (CAC) Calcium aluminate cement (CAC) is classified as a hydraulic binder presenting various advantages, such as fast hardening at room temperature and suitable Theological properties, when compared to traditional materials. Based on this, CAC has been investigated as an alternative biomaterial in order to overcome some drawbacks presented by commercial products usually applied in the dentistry (mineral trioxide aggregate=MTA and glass ionomer) and orthopedics (poly methyl methacrylate=PMMA) fields. In this work, the properties of CAC-based compositions containing different amounts of additives (i.e., alumina, zirconia, zinc oxide, hydroxyapatite, tricalcium phosphate, chitosan and collagen) were evaluated and the attained results were compared to those of MTA, PMMA and two glass ionomers (Meron and Vidrion F). The characterization of the selected materials comprised their particle size distribution, as well as the cold crushing strength, apparent porosity, pore size distribution and radiopacity. Plain CAC presented higher crushing strength than the commercial products used in dentistry and the blend of this cement with 4 wt% of additives (alumina, zirconia, zinc oxide, tricalcium phosphate or hydroxyapatite) resulted in improved mechanical performance when compared to PMMA (cement for bone repair). The addition of zinc oxide and hydroxyapatite to CAC also gave rise to samples with low porosity levels and smaller pore sizes after their contact with simulated body fluid solution over 7 days at 37 degrees C. Conversely, collagen and chitosan-containing compositions showed higher porosity and lower mechanical strength. Regarding the radiopacity results, the evaluated compositions presented better results than the commercial products, except for MTA. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:铝酸钙水泥(CAC)与传统材料相比,铝酸钙水泥(CAC)被归类为具有各种优点的水硬性粘结剂,例如在室温下快速硬化和合适的流变性能。基于此,已经对CAC作为一种替代生物材料进行了研究,以克服通常在牙科领域(三氧化二矿骨料= MTA和玻璃离聚物)和整形外科领域(聚甲基丙烯酸甲酯= PMMA)中使用的商品所带来的一些缺点。在这项工作中,评估了含有不同数量添加剂(例如,氧化铝,氧化锆,氧化锌,羟基磷灰石,磷酸三钙,壳聚糖和胶原蛋白)的CAC基组合物的性能,并将获得的结果与MTA,PMMA和两种玻璃离聚物(Meron和Vidrion F)。所选材料的特征包括其粒度分布,冷压强度,表观孔隙率,孔径分布和不透射线。普通CAC的抗压强度比牙科用商业产品更高,该水泥与4 wt%的添加剂(氧化铝,氧化锆,氧化锌,磷酸三钙或羟基磷灰石)的共混物与PMMA(用于水泥的水泥)相比具有改善的机械性能。骨修复)。在37摄氏度下与模拟体液接触7天后,向CAC中添加氧化锌和羟基磷灰石也会导致孔隙率低且孔径较小的样品。相反,含胶原蛋白和壳聚糖的组合物显示出较高的孔隙率,并且较低的机械强度。关于射线不透性结果,除了MTA以外,所评价的组合物表现出比市售产品更好的结果。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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