首页> 外文期刊>Journal of Indian Society of Pedodontics and Preventive Dentistry >Surface remineralization potential of nano-hydroxyapatite, sodium monofluorophosphate, and amine fluoride containing dentifrices on primary and permanent enamel surfaces: An in vitro study
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Surface remineralization potential of nano-hydroxyapatite, sodium monofluorophosphate, and amine fluoride containing dentifrices on primary and permanent enamel surfaces: An in vitro study

机译:初级和永久搪瓷表面上的纳米羟基磷灰石,单氟磷酸钠和含氟化胺的洁牙剂的表面再矿化潜力:一项体外研究

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Background: Organic amine fluorides and nano-hydroxyapatite dentifrices have shown remineralization potential in various studies. However, there is a lack of direct comparison between amine fluoride and nano-hydroxyapatite with conventional inorganic fluorides as sodium monofluorophosphate. Aim: The aim of the study is to evaluate remineralizing efficacy of the three dentifrices on both primary and permanent enamel surfaces. Methods: Enamel sections were obtained from 40 sound molars – 20 primary and 20 permanent molars. Five enamel slabs were prepared from these extracted molars stored in artificial saliva, wherein one slab acted as control, second as demineralized (negative control), and other three slabs were brushed with sodium monofluorophosphate, amine fluoride, and nano-hydroxyapatite dentifrices, respectively, twice daily for 21 days. Scanning electron microscopy- Energy dispersive spectroscopy (SEM-EDS) analysis for surface morphology and calcium and phosphorus content and Vickers surface microhardness (SMH) values were evaluated at baseline, after demineralization, and postapplication of the experimental agents. Results: Highly significant changes in calcium phosphorus ratio and SMH values were seen in enamel slabs treated with nano-hydroxyapatite and amine fluoride dentifrice as compared to sodium monofluorophosphate in both primary and permanent teeth. Surface morphology of enamel slabs treated with amine fluoride most closely resembled natural enamel morphology, while sodium monofluorophosphate-treated surfaces showed globular pattern of remineralization. Deposition of a separate highly mineralized layer over existing surface was seen in nano-hydroxyapatite-treated surfaces. Conclusions: Nano-hydroxyapatite exhibited highest remineralization potential in terms of mineral gain followed by amine fluoride and sodium monofluorophosphate dentifrice.
机译:背景:有机胺氟化物和纳米羟基磷灰石洁牙剂在各种研究中均显示出了再矿化的潜力。然而,在氟化胺和纳米羟基磷灰石与传统的无机氟化物单氟磷酸钠之间缺乏直接的比较。目的:该研究的目的是评估三种牙粉在初级和永久性釉质表面的再矿化功效。方法:从40个声磨牙– 20个初级磨牙和20个永久磨牙获得牙釉质切片。从储存在人工唾液中的这些磨牙中制备出五块搪瓷板,其中一块作为对照,第二块为去矿质(阴性对照),另外三块分别用一氟磷酸钠,氟化胺和纳米羟基磷灰石牙膏刷牙。每天两次,共21天。扫描电镜-能量色散光谱(SEM-EDS)分析的表面形态,钙和磷含量以及维氏表面显微硬度(SMH)值均在基线,脱矿质后和实验剂施用后进行了评估。结果:与单氟磷酸钠相比,用纳米羟基磷灰石和氟化胺洁牙剂处理的牙釉质中钙磷比和SMH值的变化非常显着。用氟化胺氟化物处理的搪瓷板的表面形态与天然搪瓷形态最相似,而一氟磷酸钠处理过的表面则显示出球状矿化。在纳米羟基磷灰石处理过的表面上可以看到在现有表面上沉积了一个单独的高度矿化层。结论:就矿物质获得而言,纳米羟基磷灰石具有最高的再矿化潜力,其次是氟化胺和单氟磷酸钠洁牙剂。

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