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一种含有脯氨酸的玻璃离子体牙科水门汀的性能。

Properties of a proline-containing glass ionomer dental cement.

机构信息

Graduate student, Herman Ostrow School of Dentistry, University of Southern California, Los Angeles, Calif.

出版信息

J Prosthet Dent. 2013 Nov;110(5):408-13. doi: 10.1016/j.prosdent.2013.04.009. Epub 2013 Aug 30.

Abstract

STATEMENT OF PROBLEM

Proline-containing glass ionomers are promising fast-set dental restorative materials with superior mechanical properties; however, little information is available on other physical properties of this type of glass ionomer.

PURPOSE

The objectives of this study were to synthesize and characterize a polyacrylic acid terpolymer containing proline derivative (PD) and to investigate the physical properties of this glass ionomer cement (GIC) and its cytotoxicity in vitro.

MATERIAL AND METHODS

A terpolymer of AA (acrylic acid), IA (itaconic acid), and proline derivative (MP) with an 8:1:1 molar ratio was synthesized and characterized. Experimental GIC specimens were made from the synthetized terpolymer with Fuji IX (GC America, Alsip, Ill) commercial glass ionomer powder as recommended by the manufacturer. Specimens were mixed and fabricated at room temperature and were conditioned in distilled water at 37°C for 1 day and 1 week. Vickers hardness was determined with a microhardness tester. The water sorption characteristics and fluoride releasing properties of the specimens were investigated. The in vitro cytotoxicity of the experimental glass ionomer was assessed by evaluating the C2C12 cell metabolism with methyltetrazolium (MTT) assay. Commercial Fuji IX was used as a control for comparison. The data obtained for the experimental GIC (PD) were compared with the control group by using 1- and 2-way ANOVA and the Tukey multiple range test at α=.05.

RESULTS

Proline-modified GIC (PD) exhibited significantly higher surface hardness values (Vickers hardness number [VHN] 58 ±6.1) in comparison to Fuji IX GIC (VHN 47 ±5.3) after 1 week of maturation. Statistical analysis of data showed that the water sorption properties of the experimental cement (PD) were significantly greater than those of the control group (P<.05). The experimental GIC showed a significant increase in the amounts of initial fluoride release (P<.05) with continued fluoride release from the bulk of the material. The experimental group showed slightly reduced cell metabolism and cell number in comparison to the control group. However, the results were not statistically different (P>.05).

CONCLUSIONS

An amino acid-containing GIC had better surface hardness properties than commercial Fuji IX GIC. This formulation of fast-set glass ionomer showed increased water sorption without adversely affecting the amount of fluoride release. Considering its biocompatibility, this material shows promise not only as a dental restorative material but also as a bone cement with low cytotoxicity.

摘要

问题陈述

含脯氨酸的玻璃离子水门汀是一种有前途的快速凝固牙科修复材料,具有优异的机械性能;然而,关于这种类型的玻璃离子水门汀的其他物理性质的信息很少。

目的

本研究的目的是合成并表征一种含有脯氨酸衍生物(PD)的聚丙烯酸三元共聚物,并研究这种玻璃离子水门汀(GIC)的物理性质及其体外细胞毒性。

材料与方法

合成 AA(丙烯酸)、IA(衣康酸)和脯氨酸衍生物(MP)摩尔比为 8:1:1 的三元共聚物,并对其进行了表征。实验性 GIC 试件由合成的三元共聚物与富士 IX(GC America,Alsip,Ill)商业玻璃离子水门汀粉制成,如制造商推荐的那样。试件在室温下混合和成型,并在 37°C 的蒸馏水中养护 1 天和 1 周。用显微硬度计测定维氏硬度。研究了试件的吸水特性和氟释放特性。通过评估 C2C12 细胞代谢的甲基噻唑基四唑(MTT)测定法,评估实验性玻璃离子水门汀的体外细胞毒性。商用富士 IX 用作对照进行比较。使用单因素和双因素方差分析以及 Tukey 多重范围检验,将实验性 GIC(PD)获得的数据与对照组进行比较,α=.05。

结果

与成熟 1 周后的富士 IX GIC(VHN 47 ±5.3)相比,脯氨酸修饰的 GIC(PD)的表面硬度值(维氏硬度数[VHN]58±6.1)显著更高。数据分析表明,实验性水泥(PD)的吸水性能明显大于对照组(P<.05)。实验性 GIC 显示初始氟释放量显著增加(P<.05),同时材料本体的氟持续释放。与对照组相比,实验组的细胞代谢和细胞数量略有减少,但差异无统计学意义(P>.05)。

结论

含有氨基酸的 GIC 具有比商用富士 IX GIC 更好的表面硬度性能。这种快速凝固玻璃离子水门汀配方的吸水率增加,而不会对氟释放量产生不利影响。考虑到其生物相容性,这种材料不仅有望成为牙科修复材料,还有望成为具有低细胞毒性的骨水泥。

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