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Remineralization of artificial carious lesions using a novel fluoride incorporated bioactive glass dentifrice

机译:使用新型氟化物生物活性玻璃洁牙剂对人工龋齿病变部位进行再矿化

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Background . Remineralization potential of dentifrices with novel compositions that can restore minerals back into incipient carious lesions has not been extensively studied so far. Objectives . The aim of this study was to assess the efficacy of a dentifrice based on novel fluoride incorporated bioactive glass in remineralizing artificial carious lesions in human enamel, and compare it with a standard fluoride-containing dentifrice. Material and Methods . Twenty-four human extracted teeth were sectioned at the cementoenamel junction to obtain enamel blocks. These blocks (n = 24) were randomly divided into 3 groups, with each group containing 8 specimens: group 1 (negative control group; distilled water), group 2 (positive control group; fluoride toothpaste) and group 3 (test group; BioMinTM F toothpaste). Artificial carious lesions were produced in the enamel surfaces by exposing them to a demineralization solution (6% citric acid, pH 2.2) for 96 h. After demineralization, the specimens were brushed with manual toothbrushes in a toothbrush simulation machine (each sample received 800 strokes). For brushing the specimens from group 1, 20 mL of distilled water was used, for group 2 – 20 mL of slurry of toothpaste mixed with artificial saliva, and for group 3 – 20 mL of slurry of toothpaste (BioMin F) mixed with artificial saliva. The micro-hardness data (VHN – Vickers hardness number) was collected at baseline (sound enamel), post-demineralization and post-remineralization. Results . The biggest difference between the post-remineralization and post-demineralization values was observed in group 3 (mean VHN = 118.73), followed by group 2 (mean VHN = 60.54) and group 1 (mean VHN = 47.44). All the groups revealed significant differences (p 0.05) when the post-demineralization and post-remineralization values were compared to baseline values within each group. Conclusion . The BioMin F group outperformed the other 2 groups in terms of remineralizing the demineralized enamel structure.
机译:背景 。迄今为止,尚未广泛研究具有新颖成分的牙粉的再矿化潜力,该成分可将矿物质恢复为初期龋齿病变。目标。这项研究的目的是评估基于新型氟化物生物活性玻璃的洁牙剂在矿化人牙釉质中人工龋齿病变方面的功效,并将其与标准的含氟洁牙剂进行比较。材料与方法 。在牙釉质交界处切开二十四颗人类拔牙,以获得牙釉质块。这些块(n = 24)随机分为3组,每组包含8个样本:第1组(阴性对照组;蒸馏水),第2组(阳性对照组;氟化物牙膏)和第3组(测试组; BioMinTM) F牙膏)。通过将其暴露在脱矿物质溶液(6%柠檬酸,pH 2.2)中96小时,可在釉质表面产生人造龋齿损伤。脱矿质后,在牙刷模拟机中用手动牙刷刷洗样品(每个样品接受800冲程)。为了刷洗第1组的标本,使用了20 mL蒸馏水,第2组–混合了20mL的牙膏浆与人工唾液混合,第3组–了20 mL的牙膏浆(BioMin F)与人工唾液混合了。显微硬度数据(VHN –维氏硬度值)是在基线(搪瓷),去矿质后和再矿化后收集的。结果。在第3组(平均VHN = 118.73),第2组(平均VHN = 60.54)和第1组(平均VHN = 47.44)中,发现了矿化后和矿化后值之间的最大差异。将除矿化后和再矿化后的值与每组中的基线值进行比较时,所有组均显示出显着差异(p <0.05)。结论。就矿化脱矿的搪瓷结构而言,BioMin F组的性能优于其他两组。

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