Effect of Nano-hydroxyapatite Toothpaste on Microhardness of Primary Teeth Enamel in Comparison with Two other Toothpastes “An in Vitro Study”

Marwa Mohamed, Reham Elghazawy, Amr Abd El-Aziz
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Abstract

Aim: The purpose of the current study was to investigate the effect of a nano-hydroxyapatite toothpaste on microhardness primary teeth enamel in comparison with two other kinds of toothpaste (fluoride and miswak) regarding their effect on the microhardness of enamel by the Vickers hardness test and surface topography using scanning electron microscopy (SEM) Materials and methods: forty extracted primary molars were obtained from the outpatient clinic of the Pediatric Dentistry Department, Faculty of Dentistry, Ain-Shams University. samples were grouped into four main groups according to the type of toothpaste used. Group 1: specimens were brushed with Nano hydroxyapatite toothpaste. Group 2: specimens were brushed with fluoride toothpaste. Group 3: specimens were brushed with Miswak toothpaste. Group 4: specimens were immersed in distilled water; specimens were subjected to a microhardness test (the Vicker test) before and after the remineralization stage. The specimens from the Nano-HA groups, the positive control group, and the negative control group were prepared for SEM examination. These were analyzed using a scanning electron microscope. Results: The most significant finding was achieved in NHAP, followed by fluoride and then miswak, whereas the value was found to be at its lowest in distilled water. Conclusion: NHA toothpaste exerted remineralizing effects on the artificial carious lesion.
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纳米羟基磷灰石牙膏对初级牙釉质微硬度的影响与其他两种牙膏的比较 "体外研究
目的:本研究的目的是通过维氏硬度测试和扫描电子显微镜(SEM)的表面形貌,比较纳米羟基磷灰石牙膏与其他两种牙膏(氟化物牙膏和米斯瓦克牙膏)对珐琅质微硬度的影响,从而研究纳米羟基磷灰石牙膏对基牙珐琅质微硬度的影响 材料和方法:从艾因-沙姆斯大学牙科学院儿童牙科门诊部获得 40 颗拔出的基牙臼齿。根据所使用牙膏的类型将样本分为四大组。第 1 组:样本用纳米羟基磷灰石牙膏刷牙。第 2 组:样本用含氟牙膏刷牙。第 3 组:用 Miswak 牙膏刷试样。第 4 组:将试样浸泡在蒸馏水中;在再矿化阶段前后对试样进行显微硬度测试(Vicker 测试)。将来自纳米羟基纤维素组、阳性对照组和阴性对照组的试样准备用于扫描电镜检查。使用扫描电子显微镜对其进行分析。结果:在 NHAP 中的发现最为明显,其次是氟化物,然后是 miswak,而在蒸馏水中的数值最低。结论NHA 牙膏对人工龋损具有再矿化作用。
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