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The effects of low-fluoride toothpaste supplemented with calcium glycerophosphate on enamel demineralization

机译:低氟牙膏加甘油磷酸钙对牙釉质脱矿质的影响

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Objectives: The aim of the present study was to evaluate the effects of different concentrations of calcium glycerophosphate (CaGP) in toothpastes with low-fluoride (low-F) concentrations on enamel demineralization by using a bovine enamel and pH cycling model. Materials and methods: Experimental toothpastes containing 0 or 500 μg F/g (NaF) and CaGP concentrations of 0, 0.1, 0.25, 0.5, 1, and 2 % were manufactured. A commercial toothpaste was used as a positive control (1,100 μg F/g). After polishing and hardness tests, enamel blocks were subjected to pH cycling for 5 days and toothpaste treatment twice daily. The treatment regimen involved soaking all blocks in the corresponding slurry for 1 min (2 ml/block). Surface and cross-sectional hardness and fluoride concentrations in enamel were analyzed. The hardness data were analyzed using a one-way ANOVA followed by a Bonferroni post hoc test. Fluoride concentrations were analyzed using a Kruskal-Wallis followed by a Student-Newman-Keuls post hoc test. Results: The mineral loss with the toothpaste containing 500 μg F/g and 0.25 % CaGP was lower than that in the other groups (p < 0.05). Fluoride concentrations in the enamel treated with 0.1, 0.25, and 0.5 % CaGP toothpastes were similar to those in the enamel treated with the 500 μg F/g toothpaste (p > 0.05). A greater concentration of CaGP reduced the fluoride levels in enamel (p < 0.05). Conclusions: The results from the present in vitro study show that a low-F (500 μg F/g) toothpaste is capable of maintaining the efficacy of 1,100 μg F/g toothpaste when supplemented with 0.25 % of CaGP. Clinical relevance: The developed toothpaste prevents caries as a standard one and is safe for individuals of any age group.
机译:目的:本研究的目的是通过使用牛牙釉质和pH循环模型评估低氟化物(low-F)浓度的牙膏中不同浓度的甘油磷酸钙(CaGP)对牙釉质脱矿的影响。材料和方法:制造了实验牙膏,其含量为0或500μgF / g(NaF),CaGP浓度为0、0.1、0.25、0.5、1和2%。使用市售牙膏作为阳性对照(1100μgF / g)。经过抛光和硬度测试后,对牙釉质块进行pH循环5天,并每天两次对牙膏进行处理。处理方案包括将所有块均浸入相应的浆液中1分钟(2 ml /块)。分析了搪瓷的表面和横截面硬度以及氟化物浓度。使用单向方差分析,随后进行Bonferroni事后测试分析硬度数据。使用Kruskal-Wallis进行氟化物浓度分析,然后进行Student-Newman-Keuls事后检验。结果:含500μgF / g和0.25%CaGP的牙膏的矿物质流失率低于其他组(p <0.05)。用0.1%,0.25%和0.5%CaGP牙膏处理的牙釉质中的氟化物浓度与用500μgF / g牙膏处理的牙釉质中的氟化物浓度相似(p> 0.05)。较高浓度的CaGP会降低牙釉质中的氟化物含量(p <0.05)。结论:目前的体外研究结果表明,低氟(500μgF / g)牙膏补充0.25%的CaGP能够维持1,100μgF / g牙膏的功效。临床意义:发达的牙膏可以预防龋齿,并且对任何年龄段的人都是安全的。

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