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Evaluating Acid Resistance Effect of Fluoride-Releasing Dental Materials Using Quantitative Light-Induced Fluorescence-Digital in Vitro

机译:使用定量光诱导荧光数字体外评估氟释放牙科材料的耐酸性效果

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As erosion has become one of the serious oral health problems, some fluoride-releasing dental materials have been developed to protect enamel from demineralization. The purpose of this study was to evaluate the antidemineralization effect of PRG Barrier Coat? and FujiVII? (fluoride-releasing dental materials). Four square windows measuring 1 mm2 were prepared on the labial enamel surface of each bovine tooth using masking tape and nail varnish. The first and second windows were half covered by fluoride-releasing material and control material, respectively, whereas the third and fourth windows were left untreated. All windows were immersed into 0.1 M lactic acid and 6wt% CM-cellulose (pH 4.5) at 38℃ for 21 days. Subsequently, the first and second windows were covered with nail varnish after removal of the materials, and the third and fourth windows were immersed into ultrapure water at 38℃ for 28 days after being half covered with fluoride-releasing and control materials, respectively. The following procedure was performed separately during evaluations of the fluoride-releasing materials, PRG Barrier Coat, and FujiVII?, using eight and six bovine teeth, respectively. The first, second, third, and fourth windows were classified into DM-PRG; Demineralized-PRG or DM-FujiVII; Demineralized-FujiVII, DM-TCM; Demineralized-traditional cement or DM-TGIC; De-mineralized-traditional glass ionomer cement, RM-PRG; Remineralized-PRG or RM-FujiVII; Re-mineralized-FujiVII, and RM-TCM; Remineralized- traditional cement or RM-TGIC; Remineral-ized-traditional glass ionomer cement, respectively. After nail varnish was removed, △Q values (mean ± SD) of the windows were measured using QLF-D and were compared between DM-PRG and DM-TCM, RM-PRG and RM-TCM, DM-FujiVII and DM-TGIC, and RM-FujiVII and RM-TGIC groups. △Q values of RM-PRG (-60 ± 44) and RM-FujiVII (-5.0 ± 10) were significantly higher than that of RM-TCM (-315 ± 193) and RM-TGIC (-56 ± 43), respectively. The fluoride releasing materials provided remineralization effects to bovine enamel.
机译:由于腐蚀已成为严重的口腔健康问题之一,因此已经开发出一些可释放氟化物的牙科材料,以保护牙釉质免于脱盐。这项研究的目的是评估PRG隔离涂层的抗脱矿化作用。和FujiVII? (含氟牙科材料)。使用美纹纸胶带和指甲油在每个牛齿的唇釉表面准备四个面积为1 mm2的方形窗口。第一和第二窗口分别用氟化物释放材料和对照材料覆盖一半,而第三和第四窗口则未经处理。将所有窗口在38℃下浸入0.1M乳酸和6wt%CM纤维素(pH 4.5)中21天。随后,在去除材料后,用指甲油覆盖第一和第二窗口,将第三和第四窗口分别用氟释放和控制材料分别覆盖后,在38℃的超纯水中浸泡28天。在评估释放氟化物的材料,PRG防渗涂层和FujiVII®的过程中,分别使用八个和六个牛齿分别执行以下步骤。第一,第二,第三和第四窗口被分类为DM-PRG。脱矿质PRG或DM-FujiVII;脱盐富士七,DM-TCM;脱矿传统水泥或DM-TGIC;脱矿质-传统玻璃离聚物水泥,RM-PRG;再矿化的PRG或RM-FujiVII;重新矿化的富士七号和RM-TCM;再矿化-传统水泥或RM-TGIC;矿化传统玻璃离聚物水泥。去除指甲油后,使用QLF-D测量窗户的△Q值(平均值±SD),并在DM-PRG和DM-TCM,RM-PRG和RM-TCM,DM-FujiVII和DM-TGIC之间进行比较,以及RM-FujiVII和RM-TGIC组。 RM-PRG(-60±44)和RM-FujiVII(-5.0±10)的△Q值分别显着高于RM-TCM(-315±193)和RM-TGIC(-56±43)的△Q值。释放氟化物的材料为牛牙釉质提供了再矿化作用。

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