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Fluoride Release of Fresh and Aged Glass Ionomer Cements after Recharging with High-Fluoride Dentifrice

机译:用高氟化物洁面液再充电后新鲜和老化玻璃离聚物水泥的氟化物释放

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摘要

Objective. This study aimed to evaluate F release from GICs before and after recharging with F-dentifrices and after aging process. Methods. Fifteen specimens of GICs (conventional, resin modified, and high viscosity) and composite resin were stored individually in a polystyrene tube containing 2 ml of deionized water (DW), with water replacement every 24 hours. After 15 days, the specimens were treated with a dentifrice suspension (1 : 3 by volume) containing 0 μg F/g (n = 5), 1,100 μg F/g (n = 5), or 5,000 μg F/g (n = 5). After 3 min, the specimens were rinsed and replaced in new tubes with 2 ml of DW. This procedure was performed 2x/day for 2 days. The readings were taken on days 1, 5, 10, and 15 before and after the treatments. A second experiment was performed, using the same specimens of the previous study that were submitted to an aging process (specimens were kept in 2 ml of DW, remaining at 37°C for 36 weeks). Readings using specific electrode for F detection were taken on days 1, 5, 10, and 15 after treatment of the samples as described above. Data were analyzed by ANOVA and Tukey’s test with α fixed at 5%. Results. It was observed that the highest release of F for all the GICs occurred on the first day after the treatments, especially when using a high-fluoride dentifrice, with decreasing release over time. Also, although aged GICs still recharge with F treatments, the amount of F released was lower than fresh materials. Conclusion. GICs present a high F recharge and release capacity, especially in the first 24 hours and after the treatment with a high-fluoride dentifrice, even after material aging.
机译:客观的。本研究旨在评估与F型亮度和老化过程再充电之前和之后的GICS释放。方法。在含有2ml去离子水(DW)的聚苯乙烯管中单独储存十五种GICS(常规,树脂改性和高粘度)和复合树脂,每24小时用水置换液。 15天后,用含0μgf / g(n = 5),1,100μgf / g(n = 5),或5,000μgf / g(n的液体悬浮液(1:3 by体积)处理样品。 = 5)。 3分钟后,将样品冲洗并用2mL DW的新管中替换。该过程进行2次/天2天。在治疗前后的第1,5,10和15天,读数是读取的。使用将前一项研究的相同试验进行了第二实验,该研究将转化过程(试样保持在2mL DW中,留在37℃36周)。如上所述,在处理样品后的第1,5,10和15天使用特定电极进行使用的读数。通过Anova和Tukey的测试分析数据,α固定在5%。结果。观察到,对于治疗后的第一天,特别是当使用高氟化物洁齿剂时发生的最高释放,特别是当使用高氟化物洁齿剂时,随着时间的推移降低。此外,虽然老化的GICS仍然用处理仍充电,但F释放的F量低于新鲜材料。结论。 GICS呈现出高级充电和释放能力,特别是在前24小时和用高氟化物洁齿剂处理后,即使在材料老化之后也是如此。

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