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通过凝胶注模法获得的具有生物活性和生物相容性的HA/溶胶-凝胶玻璃混合物碎片。

Bioactive and biocompatible pieces of HA/sol-gel glass mixtures obtained by the gel-casting method.

作者信息

Padilla S, Sánchez-Salcedo S, Vallet-Regí M

机构信息

Departamento de Química Inorgánica y Bioinorgánica, Facultad de Farmacia, Universidad Complutense de Madrid, 28040 Madrid, Spain.

出版信息

J Biomed Mater Res A. 2005 Oct 1;75(1):63-72. doi: 10.1002/jbm.a.30405.

Abstract

Hydroxyapatite (HA)/glass mixtures have shown a faster bioactive behaviour than HA itself. On the other hand, the gel-casting method is a simple and reproducible colloidal method to produce ceramic pieces with complex shapes. In this work, pieces of HA/glass mixtures were prepared by the gel-casting method. A study for obtaining concentrated slurries of these mixtures is reported; the bioactivity and biocompatibility of the obtained pieces have been studied also. The influence of pH, dispersant concentration, the content and milling of glass, and the way to prepare the suspensions were investigated. The lowest viscosity and better rheological properties were achieved with the lowest glass content, when the glass was added after the dispersion of the HA powder and when the glass was not milled after calcination. Fluid suspensions with a high solid content (50 vol.%) could be prepared and well-shaped pieces were obtained from these slurries. These pieces showed in vitro bioactive behavior in simulated body fluid; additionally, the proliferation and spreading assays with osteoblastic cells (HOS) showed that the pieces are biocompatible. The results obtained indicate that the gel-casting of HA/glass mixtures produces bioactive and biocompatible pieces with the required shapes. Therefore, these materials could be good candidates for clinical applications and scaffolds for tissue engineering.

摘要

羟基磷灰石(HA)/玻璃混合物已显示出比HA本身更快的生物活性行为。另一方面,凝胶注模法是一种简单且可重复的胶体方法,用于生产具有复杂形状的陶瓷件。在这项工作中,通过凝胶注模法制备了HA/玻璃混合物件。报道了一项关于获得这些混合物浓缩浆料的研究;还研究了所得部件的生物活性和生物相容性。研究了pH值、分散剂浓度、玻璃含量和研磨情况以及制备悬浮液的方式的影响。当玻璃在HA粉末分散后添加且玻璃在煅烧后未研磨时,玻璃含量最低时可实现最低粘度和更好的流变性能。可以制备具有高固体含量(50体积%)的流体悬浮液,并从这些浆料中获得形状良好的部件。这些部件在模拟体液中表现出体外生物活性行为;此外,与成骨细胞(HOS)的增殖和铺展试验表明这些部件具有生物相容性。所得结果表明,HA/玻璃混合物的凝胶注模法可生产出具有所需形状的生物活性和生物相容性部件。因此,这些材料可能是临床应用和组织工程支架的良好候选材料。

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