Effect of treatment time on performance of nano-encapsulated fluoride dentifrices for remineralization of initial carious lesions: an in vitro study.

Andressa Fb Oliveira, Elizabeth Bg Sousa, Nayanna Ls Fernandes, Ingrid A Meira, Juliane R Lavôr, Ana Mbp Chaves, Fábio C Sampaio
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Abstract

The aim of this in vitro study was to evaluate the influence of treatment time on the remineralization performance of nanoencapsulated fluoride dentifrices on initial carious lesions. Ninety-six human enamel samples were allocated to eight groups (n = 12): 50% NanoF + 50% free NaF, 100% NanoF, 100% NaF (positive control), and placebo (negative control), using two different treatment times (one and five minutes) for each dentifrice tested. After the carious lesion induction, the specimens were submitted to a pH remineralizing cycling model for seven days. Surface microhardness was measured before and after carious lesion induction and after treatment. The percentage of surface remineralization was calculated for each study time. Data were analyzed using two-way ANOVA and ANOVA repeated-measures tests followed by the Bonferroni correction (p < 0.05). Remineralization differences were observed in the dentifrices analyzed according to the treatment time used. NanoF formulations with 50% (one-min treatment) and 100% (five-min treatment) promoted significant remineralization of enamel after the caries challenge when compared to the placebo dentifrice (p < 0.05). Thus, time was considered an important factor for the fluoride release system. Nanotechnology can be a promising system for caries remineralization as it makes fluoride available on the dental surface for a longer time.

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治疗时间对纳米氟化物胶囊治疗初始龋齿再矿化性能的影响:体外研究
本实验的目的是评估治疗时间对纳米氟化物胶囊对初始龋齿损伤再矿化性能的影响。96份人类牙釉质样本被分为8组(n = 12): 50% NanoF + 50%游离NaF, 100% NanoF, 100% NaF(阳性对照)和安慰剂(阴性对照),每种牙膏使用两种不同的处理时间(1分钟和5分钟)。龋齿诱导后,进行pH再矿化循环模型,持续7天。在龋齿诱发前后及治疗后分别测定表面显微硬度。计算每个研究时间的表面再矿化百分比。数据分析采用双因素方差分析和方差分析重复测量检验,并进行Bonferroni校正(p < 0.05)。根据治疗时间的不同,观察牙釉质再矿化的差异。与安慰剂牙膏相比,50%(治疗1分钟)和100%(治疗5分钟)的NanoF配方在龋齿攻击后显著促进牙釉质再矿化(p < 0.05)。因此,时间被认为是氟化物释放系统的一个重要因素。纳米技术是一种很有前途的龋齿再矿化系统,因为它可以使牙齿表面的氟化物在更长的时间内有效。
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