Title of article :
Effect of low-fluoride toothpastes combined with hexametaphosphate on in vitro enamel demineralization
Author/Authors :
da Camara، نويسنده , , Danielle Mendes and Miyasaki، نويسنده , , Marcela Lumi and Danelon، نويسنده , , Marcelle and Sassaki، نويسنده , , Kikue Takebayashi and Delbem، نويسنده , , Alberto Carlos Botazzo، نويسنده ,
Pages :
7
From page :
256
To page :
262
Abstract :
AbstractObjectives m of this study was to evaluate the anticaries effect of low-fluoride toothpastes combined with hexametaphosphate (HMP) on enamel demineralization. s enamel blocks were subjected to pH cycling and treatment with toothpasteʹs slurries (15 groups; 2×/day). Toothpaste mixtures contained the following: no fluoride (F) plus HMP (from 0 to 3.0%); 250 ppm F plus HMP (from 0 to 3.0%); 500 ppm F; 1100 ppm F; and a commercial toothpaste (1100 ppm F). After pH cycling, surface and cross-sectional hardness, as well as F present in the enamel were determined. The demineralization depth was analyzed using polarized light microscopy. The variables were subjected to 1-way ANOVA, followed by Student–Newman–Keuls’ test (p < 0.05). s absence of fluoride, 0.5% HMP promoted the lowest mineral loss and its effect was similar to that of a 250 ppm F toothpaste (p > 0.05). The combination of 0.5% HMP and 250 ppm F resulted in lower mineral loss (p < 0.05) and similar lesion depth when compared to the 1100 ppm F toothpaste (p > 0.05). sion clude, the combination of 0.5% HMP and 250 ppm fluoride in a toothpaste has a similar inhibitory effect on enamel demineralization in vitro when compared to a toothpaste containing 1100 ppm F. al significance ticaries effect of toothpaste containing 250 ppm F combined with 0.5% HMP was similar to that of a 1100 ppm F toothpaste, despite the 4-fold difference in F concentration. Although such effects still need to be demonstrated in clinical studies, it may be a viable alternative for preschool children.
Keywords :
fluoride , Dental enamel , pH cycling , Toothpaste , phosphates , Demineralization
Journal title :
Astroparticle Physics
Record number :
2040002
Link To Document :
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