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Fluoride release from dental cements and composites: A mechanistic study

机译:牙科用水泥和复合材料中氟化物的释放:机理研究

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Objectives. The purpose of this study was (1) to compare the fluoride release profile of an experimental composite to commercial GICs, resin-modified GICs, and composite resins; (2) to assess the fluoride release process. Methods. Commercial materials (n=3) were prepared according to manufacturers' directions. The experimental composite (n=3) consisted of 78 wt% filler and 22 wt% resin. The resin consisted of 19wt% BisGMA, 38wt% UDMA, 19wt% TEGDMA, and 24 wt% HEMA. Disc specimens were placed into 25 ml of deionized water in sealed polyethylene vials and snaked at 1.4 Hz at 37℃. Fluoride release was measured using a fluoride-ion specific electrode at different time intervals up to 284 days. Results. The fluoride release rate of the experimental composite demonstrated the highest rate of release within the first day (p=0.05), but decreased significantly by day 7. Release rates of the commercial glass-ionomer cements and resin-modified glass-ionomer cements thereafter were significantly higher than the experimental and commercial composites at p=0.05. Among the materials studied, cumulative fluoride release is adequately described by a two-term equation consisting of an initial fluoride release via a rapid dissolution process followed by a long-term diffusive release. Significance. An increase in the hydrophilicity of the polymer matrix through the introduction of HEAAA improved the fluoride release over the short term during which dissolution occurs. Such a release behavior could be beneficial if it results in a fluoride reservoir that could be maintained by a prolonged slower release thereafter.
机译:目标。这项研究的目的是(1)比较实验性复合材料与商用GIC,树脂改性的GIC和复合树脂的氟化物释放曲线; (2)评估氟化物释放过程。方法。根据制造商的指示准备商业材料(n = 3)。实验的复合材料(n = 3)由78 wt%的填料和22 wt%的树脂组成。该树脂由19wt%的BisGMA,38wt%的UDMA,19wt%的TEGDMA和24wt%的HEMA组成。将圆盘样品放入密封的聚乙烯小瓶中的25 ml去离子水中,并在37℃下以1.4 Hz的频率弯曲。使用氟离子专用电极以长达284天的不同时间间隔测量氟的释放。结果。实验复合材料的氟化物释放速率显示出第一天的最高释放速率(p = 0.05),但到第7天则显着下降。此后,商用玻璃离聚物粘固剂和树脂改性的玻璃离聚物粘固剂的释放速率为在p = 0.05时显着高于实验和商业复合材料。在所研究的材料中,累积的氟化物释放量由两个方程式充分描述,该方程式包括通过快速溶解过程的初始氟化物释放以及随后的长期扩散释放。意义。通过引入HEAAA可以提高聚合物基质的亲水性,从而在发生溶解的短期内改善了氟化物的释放。如果这样的释放行为会导致氟化物储集层,然后通过延长的缓慢释放来维持,则可能是有益的。

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