1.23% APF凝胶对氟释放修复材料的影响。

Z C Cehreli, R Yazici, F García-Godoy
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引用次数: 0

摘要

本研究评估了1.23% APF凝胶对一种高粘度(Fuji IX GP)、三种聚酸改性树脂基复合材料(Dyract AP、F2000和Compoglass F) (PMRC)和两种树脂改性玻璃离子水泥(Vitremer和Fuji II LC)表面形态特征和表面粗糙度的影响。微填充无氟树脂基复合材料(Silux Plus)作为对照。所有的材料都是按照厂家的说明处理的。研究中使用的氟凝胶是1.23%的酸化磷酸氟凝胶(APF) (Nupro APF)。在预防性氟化物处理下,这些标本用棉花涂抹器反复暴露于APF凝胶中,模拟相当于4年(1分钟/6个月)。测量对照和处理样品的平均表面粗糙度(Ra)。沿着精加工的旋转方向和垂直于精加工方向和模具边缘的方向,对每个样品表面进行三次单独的Ra测量。在每一组中,从模具中取出Ra最接近平均值的样品,用金溅射涂层并使用扫描电子显微镜进行检查。结果表明,除Vitremer外,所有测试材料在APF处理后表面粗糙度值均有所增加。然而,这在Compoglass F、Vitremer和Fuji II LC中没有统计学意义。在PMRC材料中,F2000的Ra平均值最高,但F2000与Dyract AP、Compoglass F与Dyract AP的差异无统计学意义。除Dyract AP和Compoglass f外,Silux Plus与其他测试材料的Ra值比较差异有统计学意义。Vitremer与Fuji II LC经APF处理后Ra值差异无统计学意义。其中Fuji IX GP的表面粗糙度最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of 1.23 percent APF gel on fluoride-releasing restorative materials.

This study evaluated the effect of a 1.23 percent APF gel on the surface morphological characteristics and surface roughness of one high-viscosity (Fuji IX GP), three polyacid-modified resin-based composites (Dyract AP, F2000 and Compoglass F) (PMRC), and two resin-modified glass-ionomer cements (Vitremer and Fuji II LC). A microfilled nonfluoridated resin-based composite (Silux Plus) was used as a control. All materials were handled according to the manufacturers' instructions. The fluoride gel used in the study was a 1.23 percent acidulated phosphate fluoride gel (APF) (Nupro APF). The specimens were repeatedly exposed to the APF gel with cotton applicators for a period that simulated the equivalent of 4 yrs (1 min/6 mo) under prophylactic fluoride treatment. Average surface roughness (Ra) of the control and treated specimens was measured. Three separate Ra measurements along the direction of rotation of the finishing and perpendicular to the finishing direction and edge of the mold were made for each specimen surface. In each group, specimens with Ra closest to the mean were removed from the molds, sputter-coated with gold and examined using a scanning electron microscope. The results showed that all tested materials, except Vitremer, displayed increased surface roughness values following APF treatment. However, this was not statistically significant for Compoglass F, Vitremer and Fuji II LC. Among PMRC materials, F2000 displayed the highest Ra average value, although the differences between F2000 and Dyract AP and of Compoglass F and Dyract AP was not statistically significant. Comparisons of the Ra values between Silux Plus and the other test materials revealed statistically significant differences except for Dyract AP and Compoglass F. No statistically significant difference was found between the Ra values of Vitremer and Fuji II LC following APF treatment. Among all groups, Fuji IX GP displayed the highest surface roughness.

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