Ultrastructural evaluation of adverse effects on dentine formation from systemic fluoride application in an experimental mouse model

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Abstract

Aim: Fluoride is widely used in dentistry for its caries prevention. To reduce dental caries, the optimal fluoride concentration of public water supplies in the United States is 0.7 ppm. However, excessive systemic fluoride consumption can lead to dental/enamel fluorosis. Numerous studies have explored the effects of fluoride on enamel and enamel-forming cells. However, research on systemic fluoride's impact on dentine is limited, particularly the effect of fluoride on the structure of the dentine–pulp complex. Therefore, this study aimed to identify how excessive fluoride affects dentine microstructure using an experimental mouse model. Methodology: C57BL6/J male mice (6–9 weeks old) were randomized into four groups (Fluoride at 0, 50, 100, or 125 ppm in drinking water) (n = 4/group). Mice were provided water ad libitum for 6 weeks along with fluoride-free food. Thereafter, mandibular incisors were analysed. Enamel phenotypes were evaluated using light microscopy and quantitative light-induced fluorescence (QLF) to measure fluorosis levels. Dentine morphology was evaluated using micro-CT, scanning electron microscopy (SEM), SEM–EDX (energy-dispersive X-ray), microhardness test and histological imaging. Data were analysed using one-way ANOVA with Dunnett's multiple comparisons as a post hoc test and the Kruskal–Wallis test with Dunn's multiple comparisons post hoc test (p

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Okamoto, M., Yamashita, S., Mendonca, M., Brueckner, S., Achong-Bowe, R., Thompson, J., … Suzuki, M. (2025). Ultrastructural evaluation of adverse effects on dentine formation from systemic fluoride application in an experimental mouse model. International Endodontic Journal, 58(1), 128–140. https://doi.org/10.1111/iej.14150

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