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Compound changes and tooth mineralization effects of glass ionomer cements containing bioactive glass (S53P4), an in vivo study

机译:含生物活性玻璃(S53P4)的玻璃离聚物水泥的化合物变化和牙齿矿化作用,一项体内研究

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摘要

In this study, modifications of glass ionomer cements (GICs) were made by adding bioactive glass (BAG) to GIC to obtain bioactive restorative materials. This study used SEM, EDS and visual analysis to examine the bioactivity and the ability of the study materials to mineralize dentin. Conventional cure and resin-modified light-curing GIC were used. The materials consisted of powder and liquid. Three experimental materials were made by mixing 10-30wt% of BAG powder with GIC powders. Commercially available GIC without BAG were used as controls. Class III restorations were made in altogether 62 intact beagle dog teeth, and the operation was performed under general anesthesia. The restorations were followed clinically for 1, 3 or 6 weeks. Resin-modified GIC containing BAG showed uniform CaP surface formation on the restorations. Mineral depositions in the close vicinity of the restoration-dentin interface and in deeper parts of dentin tubules were also noticed in resin-modified GIC containing BAG particles. It can be concluded that resin-modified GIC containing BAG have good potential in clinical applications where enhanced mineralization is expected. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在这项研究中,通过向GIC中添加生物活性玻璃(BAG)来对玻璃离子水门汀(GIC)进行改性,以获得生物活性修复材料。这项研究使用SEM,EDS和视觉分析来检查生物活性以及研究材料矿化牙本质的能力。使用常规的固化和树脂改性的光固化GIC。材料由粉末和液体组成。通过将10-30wt%的BAG粉与GIC粉混合来制备三种实验材料。不含BAG的市售GIC用作对照。共对62只完整的比格犬牙齿进行了III级修复,并在全身麻醉下进行了手术。临床上对修复物进行了1、3或6周的随访。含树脂改性的GIC的BAG在修复体上显示出均匀的CaP表面形成。在含有树脂修饰的GIC的BAG颗粒中,还发现了修复体-牙本质界面附近和牙本质小管深处的矿物质沉积。可以得出结论,含有树脂修饰的GIC的BAG在有望增强矿化作用的临床应用中具有良好的潜力。 (c)2005 Elsevier Ltd.保留所有权利。

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