Department of Paediatric Dentistry,Yeditepe University, Turkey.
Eur J Paediatr Dent. 2013 Mar;14(1):68-72.
The aim of this study was to assess the effect of a single application of two topical fluoride agents: NNaF and APF (2% neutral sodium fluoride gel and 1.23% acidulated phosphate fluoride gel, respectively) on the surface roughness (Ra) of Fuji IX GP, Ketac N100, Vitremer, Dyract AP, Compoglass F and Filtek Ultimate.
The effect of NNaF and APF on the surface roughness of fluoride-releasing restorative materials was tested on disk-shaped material specimens with a surface profilometer.
All materials were handled according to manufacturer's instructions. ISO standardised specimens were prepared for each material and then stored in distilled water for 24 hr. Each sample was polished with 600 and 1200 grit sandpaper on both sides while keeping the material surface wet. Ra measurements were performed on untreated specimens initially and after 1 min, 4 min and simulated 2-years for both fluoride applications, respectively. The mean Ra values for all specimens were measured using a surface profilometer.
Differences in surface roughness values were assessed using paired t-test. The differences between the experimental groups were analysed with one-way ANOVA; p<0.05 was accepted as statistically significant.
The results of the present study indicated that Ra values for Fuji IX GP and Vitremer increased significantly after all APF, but not NNaF applications. All tested materials exhibited increased Ra values for both treatment regimes, but this was not found statistically significant.
APF gel application significantly increased the surface roughness of both Fuji IX GP and Vitremer for all time periods.
本研究旨在评估两种局部用氟化物制剂:NNaF 和 APF(分别为 2%中性氟化钠凝胶和 1.23%酸性磷酸氟凝胶)单次应用对 Fuji IX GP、Ketac N100、Vitremer、Dyract AP、Compoglass F 和 Filtek Ultimate 等氟释放修复材料表面粗糙度(Ra)的影响。
使用表面轮廓仪对 NNaF 和 APF 对释放氟化物的修复材料表面粗糙度的影响进行了圆盘状材料标本的测试。
所有材料均按照制造商的说明进行处理。为每种材料制备了符合 ISO 标准的标本,然后将其储存在蒸馏水中 24 小时。用 600 和 1200 目砂纸在两侧同时保持材料表面湿润对所有样品进行打磨。分别对未经处理的标本和两种氟化物应用的 1 分钟、4 分钟和模拟 2 年的标本进行初始和 Ra 测量。使用表面轮廓仪测量所有标本的平均 Ra 值。
使用配对 t 检验评估表面粗糙度值的差异。使用单因素方差分析分析实验组之间的差异;接受 p<0.05 为统计学显著差异。
本研究结果表明,APF 凝胶应用后,Fuji IX GP 和 Vitremer 的 Ra 值显著增加,但 NNaF 应用后则没有增加。所有测试材料在两种处理方案下的 Ra 值均增加,但未发现统计学显著差异。
APF 凝胶应用显著增加了 Fuji IX GP 和 Vitremer 在所有时间段的表面粗糙度。