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Fluorinated Montmorillonite and 3YSZ as the Inorganic Fillers in Fluoride-Releasing and Rechargeable Dental Composition Resin

机译:氟化蒙脱土和3YSZ作为氟释放和可充电牙科用组合物树脂中的无机填料

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摘要

Dental caries (tooth decay) is the most frequent oral disease in humans. Filling cavities with a dental restorative material is the most common treatment, and glass ionomer cements are the main fluoride ion release restorative materials. The goal of this study was to develop a restorative compound with superior fluoride ion release and recharge abilities. Previously developed fluorinated bentolite and hydrophobized 3YSZ were used as two different inorganic fillers mixed in a bisphenol A-glycidyl methacrylate (Bis-GMA) matrix. XRD, FTIR, and TGA were used to determine the hydrophobic modification of these two inorganic fillers. In mechanical tests, including diameter tensile strength, flexural strength, and wear resistance, the developed composite resin was significantly superior to the commercial control. A WST-1 assay was used to confirm that the material displayed good biocompatibility. Furthermore, the simulation of the oral environment confirmed that the composite resin had good fluoride ion release and reloading abilities. Thus, the composite resin developed in this study may reduce secondary caries and provide a new choice for future clinical treatments.
机译:龋齿(蛀牙)是人类中最常见的口腔疾病。用牙齿修复材料填充空腔是最常见的治疗方法,而玻璃离聚物粘固剂是主要的氟离子释放修复材料。这项研究的目的是开发一种具有优异的氟离子释放和充电能力的修复性化合物。先前开发的氟化膨润土和疏水化3YSZ用作混合在双酚A-甲基丙烯酸缩水甘油酯(Bis-GMA)基质中的两种不同的无机填料。 XRD,FTIR和TGA用于确定这两种无机填料的疏水改性。在包括直径拉伸强度,弯曲强度和耐磨性在内的机械测试中,开发出的复合树脂明显优于商业对照。 WST-1分析用于确认该材料显示出良好的生物相容性。此外,口腔环境的模拟证实了该复合树脂具有良好的氟离子释放和重载能力。因此,在这项研究中开发的复合树脂可以减少继发龋齿,并为将来的临床治疗提供新的选择。

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