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部分结晶对 3CaO·P2O5-SiO2-MgO 系统生物活性玻璃的力学性能和细胞毒性的影响。

Effect of partial crystallization on the mechanical properties and cytotoxicity of bioactive glass from the 3CaO.P(2)O(5)-SiO(2)-MgO system.

机构信息

EEL-USP, Escola de Engenharia de Lorena da Universidade de São Paulo, Polo Urbo-Industrial, Gleba AI-6, s/n, Mondesir, PC 116, Lorena (SP), Brazil.

出版信息

J Mech Behav Biomed Mater. 2012 Oct;14:78-88. doi: 10.1016/j.jmbbm.2012.04.024. Epub 2012 May 14.

Abstract

The aim of this study is to report on the development and characterization of bioactive glass and glass-ceramics from the 3CaO.P(2)O(5)-SiO(2)-MgO-system, using different degrees of cristallinity for applications as an implant material. A methodology was proposed to induce crystallization of phases. Bioglass samples of the nominal composition (wt %) 57.75 CaO.P(2)O(5)-30 SiO(2)-17.25MgO were heat treated at temperatures ranging from 700 to 1100°C for 4h. The findings from the research illustrate how partial crystallization and phase transformations modified the microstructure of the based glassy material, resulting in improved mechanical properties. The maximum gain was measured for samples treated at 975°C, having a hardness of 6.2GPa, an indentation fracture toughness of 1.7MPam(1/2) and a bending strength of 120MPa, representing an increase of 30, 55 and 70%, respectively, when compared to the nucleated glass. The highest elastic modulus of about 130GPa was determined for samples treated at 1100°C. As a preliminary biological evaluation, "in vitro" cytotoxicity tests were realized to determine the cytotoxic level of the materials, using the neutral red uptake method with NCTC clones L929 from the American Type Culture Collection (ATCC) bank. On the other hand, no significant influence of the partial crystallization on cytotoxicity was observed. The results provide support for implant materials based on the 3CaO.P(2)O(5)-SiO(2)-MgO-system.

摘要

本研究旨在报告 3CaO.P(2)O(5)-SiO(2)-MgO 系统生物活性玻璃和玻璃陶瓷的开发和特性,利用不同程度的结晶度作为植入材料。提出了一种方法来诱导相的结晶。将名义组成(wt%)为 57.75 CaO.P(2)O(5)-30 SiO(2)-17.25MgO 的生物玻璃样品在 700 至 1100°C 的温度下热处理 4 小时。研究结果表明,部分结晶和相转变如何改变基础玻璃材料的微观结构,从而提高机械性能。在 975°C 处理的样品中测量到最大增益,硬度为 6.2GPa,压痕断裂韧性为 1.7MPam(1/2),弯曲强度为 120MPa,与成核玻璃相比,分别增加了 30%、55%和 70%。在 1100°C 处理的样品中测定了最高弹性模量约为 130GPa。作为初步的生物学评价,使用美国典型培养物保藏中心(ATCC)库中的 NCTC 克隆 L929 进行中性红摄取法的“体外”细胞毒性试验,以确定材料的细胞毒性水平。另一方面,部分结晶对细胞毒性没有明显影响。结果为基于 3CaO.P(2)O(5)-SiO(2)-MgO 系统的植入材料提供了支持。

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