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食物模拟液对复合树脂及聚酸改性复合树脂修复材料表面特性的影响。

Effect of food-simulating liquids on surface characteristics of composite and polyacid-modified composite restoratives.

作者信息

Yap A U, Low J S, Ong L F

机构信息

National University of Singapore, 5 Lower Kent Ridge Road, Singapore 119074, Republic of Singapore.

出版信息

Oper Dent. 2000 May-Jun;25(3):170-6.

Abstract

The chemical environment is one aspect of the oral environment that could have an appreciable influence on the in vivo degradation of composite resins. The effects of food-simulating liquids on the surface roughness and hardness of composite (Silux Plus, Z100, Spectrum TPH, and P50) and polyacid-modified composite resins (F2000 and Dyract AP) were thus investigated and compared. Sixty disks of each material were made. Half were used for microhardness testing and the remaining half for studying surface roughness using profilometry. Each group of 30 disks was subdivided into six groups of five and conditioned for one week as follows--Group 1 (control): air at 37 degrees C; Group 2: distilled water at 37 degrees C; Group 3: 0.02 N citric acid at 37 degrees C; Group 4: 0.02 N lactic acid at 37 degrees C Group 5: heptane at 37 degrees C; Group 6: 50% ethanol-water solution at 37 degrees C. Data were analyzed using one-way ANOVA and Scheffé's test at a significance level of 0.05. Results showed that the surface roughness of all restoratives evaluated was not significantly affected by food-simulating liquids. No significant change in surface hardness was noted with conditioning of Spectrum TPH, Dyract AP, and F2000 in the various food-simulating liquids. The BIS-GMA-based composites Silux Plus, Z100, and P50 appeared to be more susceptible to the softening effects of some food-simulating liquids.

摘要

化学环境是口腔环境的一个方面,它可能对复合树脂的体内降解产生显著影响。因此,研究并比较了食品模拟液对复合树脂(Silux Plus、Z100、Spectrum TPH和P50)以及聚酸改性复合树脂(F2000和Dyract AP)表面粗糙度和硬度的影响。每种材料制作了60个圆盘。一半用于显微硬度测试,其余一半用于使用轮廓仪研究表面粗糙度。每组30个圆盘再细分为6组,每组5个,并按以下方式处理一周——第1组(对照组):37℃空气;第2组:37℃蒸馏水;第3组:37℃ 0.02N柠檬酸;第4组:37℃ 0.02N乳酸;第5组:37℃庚烷;第6组:37℃ 50%乙醇水溶液。数据采用单因素方差分析和谢费检验进行分析,显著性水平为0.05。结果表明,所评估的所有修复材料的表面粗糙度均未受到食品模拟液的显著影响。在各种食品模拟液中对Spectrum TPH、Dyract AP和F2000进行处理后,表面硬度未发现显著变化。基于双酚A缩水甘油醚的复合树脂Silux Plus、Z100和P50似乎更容易受到某些食品模拟液的软化作用影响。

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