Prevention of enamel demineralization with a novel fluoride strip: Enamel surface composition and depth profile

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Abstract

There is no topically applicable low concentration fluoride delivery device available for caries prevention. This study was aimed to assess the use of a low concentration (1450 ppm) fluoride strip as an effective fluoride delivery system against enamel demineralization. The enamel surface composition and calcium-deficient hydroxyapatite or toothpaste treatments were investigated using X-ray photoelectron spectroscopy. In vitro enamel demineralization was assayed using a pH cycling model and the dissolution of calcium ions from the treated specimens was quantified using ion chromatography. After 24-hr fluoride-strip treatment, the enamel was covered with a CaF 2 layer which showed a granular morphology of 1 μm in size. Below the CaF 2 layer was a region of mixed fluorapatite and CaF 2. Fluoride infiltrated extensively in enamel to produce highly fluorinated fluorohydroxyapatite. In comparison, low-fluoride-level fluorinated fluorohydroxyapatite was formed on the enamel specimen exposed to toothpaste. The treatments with the fluoride strip as short as 1 hr significantly inhibited enamel demineralization. The fluoride strip was effective for topical fluoride delivery and inhibited in vitro demineralization of enamel by forming CaF 2 and fluoride-containing apatites at the enamel surface. It exhibited the potential as an effective fluoride delivery device for general use in prevention of caries.

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Lee, B. S., Chou, P. H., Chen, S. Y., Liao, H. Y., & Chang, C. C. (2015). Prevention of enamel demineralization with a novel fluoride strip: Enamel surface composition and depth profile. Scientific Reports, 5. https://doi.org/10.1038/srep13352

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