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Fluoride as a Modifier of Metallome Homeostasis: A Systematic Review of Animal Studies.

Abstract

Fluoride is widely used for caries prevention due to its effects on mineralized tissues, yet its potential role as a modifier of systemic metal homeostasis remains insufficiently explored. This systematic review synthesizes preclinical evidence on the association between fluoride exposure and changes in metal and semi-metal concentrations across biological matrices. A comprehensive search strategy was conducted across major databases without language or date restrictions, following SyRF, CAMARADES and PRISMA 2020 guidelines. Thirty-one animal studies were included, encompassing multiple species, exposure conditions and analytical approaches. Despite substantial methodological heterogeneity, consistent patterns emerged. Fluoride exposure was associated with element-specific redistribution of the metallome rather than uniform change. Essential elements were predominantly depleted, most consistently zinc, copper and manganese, whereas the toxic metals lead and cadmium tended to be retained. This contrast between homeostatically regulated essential elements that are lost and non-regulated toxic metals that accumulate supports the hypothesis that fluoride differentially modifies the distribution and retention of co-existing elements. The novelty of this review lies in integrating metallomic outcomes across experimental models, highlighting fluoride as a potential systemic modulator rather than a tissue-specific agent. Although variability in study design and risk of bias limits causal inference, the consistent directionality of findings across models reinforces their biological plausibility and translational relevance.

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Natalia Macedo-Ribeiro, Jonas Tostes-Figueiredo, Davi da Silva Barbirato, Isabel Maria Porto, Eliude Barbosa Gomes, Erico Marlon Moraes Flores, Marília Afonso Rabelo Buzalaf, Fernando Barbosa, Raquel Fernanda Gerlach. 2026. Fluoride as a Modifier of Metallome Homeostasis: A Systematic Review of Animal Studies.. https://doi.org/10.1111/bcpt.70295

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