Remineralization Efficiency of Different Toothpastes on Human Enamel Subjected to Acid Challenge: in Vitro Study

N. Aidaros, Mona Eliwa, Raghda Kamh
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引用次数: 1

Abstract

Purpose: The objective of this in vitro study was to evaluate and compare the remineralizing potential of dentifrices containing nanohydroxyapatite, fluoride, and bioactive glass with and without fluoride on enamel by assessing the enamel surface microhardness the enamel structural and elemental analysis through Energy Dispersive X-ray Analysis (EDX). Methods: Sound extracted third molars were divided into 5 groups. Group A (n=15): Hydroxyapatite toothpaste (Karex) was used to treat the teeth; Group B (n=15): teeth were treated with Hydroxyapatite and Fluoride containing toothpaste (Apacare); Group C (n=15): teeth were treated with ChloroCalcium Phosphosilicate containing toothpaste (Biomin C); Group D (n=15): teeth were treated with FluoroCalcium Phosphosilicate containing toothpaste (Biomin F); negative control group (n=15): teeth not subjected to any treatment. All teeth (experimental and negative control groups). After 2 weeks of the dynamic pH-cycling; 10 teeth of each group were subjected to microhardness assessment, while 5 teeth of each group were subjected to EDX Analysis. Results: After 2 weeks of pH-cycling, all experimental groups (A, B, C, and D) showed a percent increase of enamel surface microhardness. Group D reported the highest percent increase (15.07%) while teeth that were not subjected to any treatment (negative control group) showed a percent decrease (-15.7%). Fluoride and calcium ions recorded a significantly higher percent increase in group D, while a significantly lower value was recorded in the control group. Conclusion: All the experimental toothpaste had the potential to remineralize enamel surface subjected to dynamic pH-cycling, but the incorporation of fluoride with the bioactive glass technology as in Biomin F toothpaste had the maximum effect on the demineralized enamel surface. Codex : 08/22.01 azhardentj@azhar.edu.eg http://adjg.journals.ekb.eg DOI: 10.21608/adjg.2021.66174.1346 Restorative Dentistry (Removable Prosthodontics, Fixed Prosthodontics, Endodontics, Dental Biomaterials, Operative Dentistry)
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不同牙膏对酸性牙釉质再矿化效果的体外研究
目的:通过对牙釉质表面显微硬度的测定和对牙釉质结构及元素的能量色散x射线分析(EDX),评价和比较含纳米羟基磷灰石、氟化物和生物活性玻璃的牙釉质再矿化潜力。方法:将正常拔出的第三磨牙分为5组。A组(n=15):采用羟基磷灰石牙膏(Karex)治疗;B组(n=15):用含羟基磷灰石含氟牙膏(Apacare)治疗;C组(n=15):用含磷硅酸氯钙牙膏(Biomin C)治疗;D组(n=15):用含氟硅酸钙牙膏(Biomin F)治疗;阴性对照组(n=15):未进行任何治疗的牙齿。所有牙齿(实验组和阴性对照组)。动态ph循环2周后;每组10颗牙进行显微硬度评估,每组5颗牙进行EDX分析。结果:ph循环2周后,各实验组(A、B、C、D组)牙釉质表面显微硬度均有百分比的提高。D组的增幅最高(15.07%),而未进行任何治疗的牙齿(阴性对照组)的增幅则为-15.7%。氟化物和钙离子在D组的增幅明显更高,而对照组的增幅明显更低。结论:在动态ph循环作用下,所有牙膏均具有牙釉质表面再矿化的潜力,但以生物活性玻璃技术加氟的百奥敏F牙膏对牙釉质表面的再矿化效果最大。法典:08/22.01 azhardentj@azhar.edu.eg http://adjg.journals.ekb.eg DOI: 10.21608/adjg.2021.66174.1346修复牙科(可移动修复学,固定修复学,牙髓学,牙科生物材料,牙科手术)
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