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Fluoride release from a new glass-ionomer cement

机译:氟化物从新的玻璃离子水泥中释放出来

摘要

This study compared the amount and pattern of fluoride release from a new glass-ionomer-based material (nano-ionomer) with other restorative materials and correlated the surface area to volume of nano-sized filler with its capacity to release fluoride in the powder, more quickly increasing the fluoride. The materials evaluated were a nano-ionomer (Ketac N 100), a conventional glass-ionomer cement (GC Fuji II), a resinmodified glass ionomer cement (GC Fuji II LC), a compomer (Dyract F) and a fluoride-releasing resin composite (Tetric N Flow). A resin composite (Synergy Flow) served as the control. Ten specimens were fabricated from each of these materials using a customized metal mold. The fluoride release was measured every 24 hours for the first seven days, and on days 14, 21 and 28, a combination fluoride ion-selective electrode connected to an ion analyzer. The data was analyzed by one-way ANOVA and Tukey HSD test 07=0.05). An initial fluoride "burst effect" was seen with all of the materials, except for the control and compomer. The conventional glassionomer cement showed the highest fluoride release on the first three days. The nano-ionomer showed the maximum release of fluoride for the remaining days. A low constant level of fluoride release was seen from the compomer and fluoride-releasing resin composite throughout the study period.
机译:这项研究比较了一种新型的基于玻璃离聚物的材料(纳米离聚物)与其他修复性材料释放的氟化物的数量和方式,并将纳米级填料的表面积与体积与其在粉末中释放氟化物的能力相关联,更快地增加氟化物。评估的材料是纳米离聚物(Ketac N 100),常规玻璃离聚物水泥(GC Fuji II),树脂改性玻璃离聚物水泥(GC Fuji II LC),复合物(Dyract F)和氟化物释放树脂。复合(Tetric N流量)。树脂复合材料(Synergy Flow)作为对照。使用定制的金属模具,从这些材料的每种中制造出十个样品。在最初的7天中每24小时测量一次氟化物的释放,并在第14天,第21天和第28天,将组合的氟化物离子选择电极连接到离子分析仪。数据通过单向方差分析和Tukey HSD测试07 = 0.05进行分析。除了对照和共聚体之外,所有材料均出现了初始的氟化物“爆裂效应”。常规的玻璃离聚物水泥在前三天内显示出最高的氟化物释放量。在剩余的几天中,纳米离聚物显示出最大的氟化物释放。在整个研究期间,均从复合体和释放氟的树脂复合物中发现了低水平的恒定氟释放。

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