2001Periodicum BiologorumOpen access

Formation of alkali-soluble fluoride on the surface of human dental enamel after different frequency of treatment with amine fluoride solution

Kata Rošin-Grget, Ileana Linčir

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Abstract

Background and Purpose. Topical application of fluoride onto the dental enamel surface mainly induces the formation of alkali-soluble fluoride, described as a calcium fluoride or calcium fluoride-like material (CaF 2 ). Itis believed that calcium fluoride acts as a pH-controlled fluoride-releasing reservoir. The aim of this study was to quantify, in vitro, the formation of alkali-soluble fluoride after application of amine fluoride solution with different fluoride content and different frequency of use on human dental enamel. Material and Methods: Four enamel slabs were cut from 11 impacted third molars and randomly divided into four groups. One of them served as the unfluoridated control (D). Each of the three groups of slabs was shaken for 3min in the amine fluoride solution of different fluoride concentration with pH of 3.8; group A; 1% F twice a day, group B: 0.5% F three times a day and group C: 0.25% F four times a day. The treatments were repeated during three consecutive days. The formation of the alkali-soluble fluoride was analyzed chemically. Results: The amount of alkali-soluble fluoride (μg/cm 2 ′SD) was significantly higher in group C(115.77′59.98) than in groups A(56.17 ′48.95) and B (71.69′37.03), No significant difference (p>0.05) was found between A and B groups. The amount of alkali-soluble fluoride on the enamel increased with the time of exposure despite the lower content of fluoride Conclusion: The results show that increased frequency of fluoride applications even with a lower fluoride contentmayresultin the formation of more calcium fluoride.

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Background and Purpose. Topical application of fluoride onto the dental enamel surface mainly induces the formation of alkali-soluble fluoride, described as a calcium fluoride or calcium fluoride-like material (CaF 2 ). Itis believed that calcium fluoride acts as a pH-controlled fluoride-releasing reservoir. The aim of this study was to quantify, in vitro, the formation of alkali-soluble fluoride after application of amine fluoride solution with different fluoride content and different frequency of use on human dental enamel. Material and Methods: Four enamel slabs were cut from 11 impacted third molars and randomly divided into four groups. One of them served as the unfluoridated control (D). Each of the three groups of slabs was shaken for 3min in the amine fluoride solution of different fluoride concentration with pH of 3.8; group A; 1% F twice a day, group B: 0.5% F three times a day and group C: 0.25% F four times a day. The treatments were repeated during three consecutive days. The formation of the alkali-soluble fluoride was analyzed chemically. Results: The amount of alkali-soluble fluoride (μg/cm 2 ′SD) was significantly higher in group C(115.77′59.98) than in groups A(56.17 ′48.95) and B (71.69′37.03), No significant difference (p>0.05) was found between A and B groups. The amount of alkali-soluble fluoride on the enamel increased with the time of exposure despite the lower content of fluoride Conclusion: The results show that increased frequency of fluoride applications even with a lower fluoride contentmayresultin the formation of more calcium fluoride.

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Available abstract

Background and Purpose. Topical application of fluoride onto the dental enamel surface mainly induces the formation of alkali-soluble fluoride, described as a calcium fluoride or calcium fluoride-like material (CaF 2 ). Itis believed that calcium fluoride acts as a pH-controlled fluoride-releasing reservoir. The aim of this study was to quantify, in vitro, the formation of alkali-soluble fluoride after application of amine fluoride solution with different fluoride content and different frequency of use on human dental enamel. Material and Methods: Four enamel slabs were cut from 11 impacted third molars and randomly divided into four groups. One of them served as the unfluoridated control (D). Each of the three groups of slabs was shaken for 3min in the amine fluoride solution of different fluoride concentration with pH of 3.8; group A; 1% F twice a day, group B: 0.5% F three times a day and group C: 0.25% F four times a day. The treatments were repeated during three consecutive days. The formation of the alkali-soluble fluoride was analyzed chemically. Results: The amount of alkali-soluble fluoride (μg/cm 2 ′SD) was significantly higher in group C(115.77′59.98) than in groups A(56.17 ′48.95) and B (71.69′37.03), No significant difference (p>0.05) was found between A and B groups. The amount of alkali-soluble fluoride on the enamel increased with the time of exposure despite the lower content of fluoride Conclusion: The results show that increased frequency of fluoride applications even with a lower fluoride contentmayresultin the formation of more calcium fluoride.

Key concepts: Fluoride, Enamel paint, Chemistry, Alkali metal, Calcium, Sodium fluoride, Nuclear chemistry, Dentistry

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