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铝硅酸盐玻璃的粒径和氟含量对玻璃离子水泥性能的影响。

The influence of particle size and fluorine content of aluminosilicate glass on the glass ionomer cement properties.

机构信息

Biomaterials Group, Department of Basic Medical Sciences, Faculty of Medicine and Health Sciences, Ghent University, De Pintelaan 185, Ghent 9000, Belgium.

Biomaterials Group, Department of Basic Medical Sciences, Faculty of Medicine and Health Sciences, Ghent University, De Pintelaan 185, Ghent 9000, Belgium.

出版信息

Dent Mater. 2014 Sep;30(9):1029-38. doi: 10.1016/j.dental.2014.06.003. Epub 2014 Jul 4.

Abstract

OBJECTIVE

Glass ionomer cements (GIC) are clinically accepted dental restorative materials mainly due to their direct chemical adhesion to both enamel and dentin and their ability to release fluoride. However, their mechanical properties are inferior compared to those of amalgam and composite. The aim of this study is to investigate if combinations of nano- and macrogranular glass with different compositions in a glass ionomer cement can improve the mechanical and physical properties.

METHODS

Glasses with the composition 4.5 SiO2-3 Al2O3-1.5 P2O5-(5-x) CaO-x CaF2 (x=0 and x=2) were prepared. Of each type of glass, particles with a median size of about 0.73 μm and 6.02 μm were made.

RESULTS

The results show that the setting time of GIC decreases when macrogranular glass particles are replaced by nanogranular glass particles, whereas the compressive strength and Young's modulus, measured after 24 h setting, increase. The effects are more pronounced when the nanogranular glass particles contain fluoride. After thermocycling, compressive strength decreases for nearly all formulations, the effect being most pronounced for cements containing nanogranular glass particles. Hence, the strength of the GIC seems mainly determined by the macrogranular glass particles. Cumulative F--release decreases when the macrogranular glass particles with fluoride are replaced by nanogranular glass particles with(out) fluoride.

SIGNIFICANCE

The present study thus shows that replacing macro- by nanogranular glass particles with different compositions can lead to cements with approximately the same physical properties (e.g. setting time, consistency), but with different physicochemical (e.g. F--release, water-uptake) and initial mechanical properties. On the long term, the mechanical properties are mainly determined by the macrogranular glass particles.

摘要

目的

玻璃离子水门汀(GIC)在临床上被接受为牙科修复材料,主要是因为它们对牙釉质和牙本质具有直接的化学黏附性,并且能够释放氟化物。然而,与银汞合金和复合树脂相比,其机械性能较差。本研究的目的是研究将不同组成的纳米和宏观玻璃颗粒与玻璃离子水门汀组合是否可以改善其机械和物理性能。

方法

制备组成分别为 4.5SiO2-3Al2O3-1.5P2O5-(5-x)CaO-xCaF2(x=0 和 x=2)的玻璃。每种类型的玻璃均制成粒径约为 0.73μm 和 6.02μm 的颗粒。

结果

结果表明,当用纳米颗粒代替大颗粒玻璃时,GIC 的凝固时间会缩短,而在 24 小时凝固后,抗压强度和杨氏模量会增加。当纳米颗粒含有氟化物时,效果更为明显。经过热循环后,几乎所有配方的抗压强度都会下降,含有纳米颗粒玻璃的水门汀下降更为明显。因此,GIC 的强度主要取决于大颗粒玻璃。当用不含氟化物的纳米颗粒代替含氟化物的大颗粒玻璃时,累积氟释放量会减少。

意义

因此,本研究表明,用不同组成的纳米和大颗粒玻璃代替可以得到具有相似物理性能(如凝固时间、稠度)但具有不同理化性能(如氟释放、吸水率)和初始机械性能的水门汀。从长远来看,机械性能主要取决于大颗粒玻璃。

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