Putative mechanisms of genotoxicity induced by fluoride: a comprehensive review.

Daniel Araki Ribeiro, Veronica Quispe Yujra, Victor Hugo Pereira da Silva, Samuel Rangel Claudio, Debora Estadella, Milena de Barros Viana, Celina Tizuko Fujiyama Oshima

Journal: Environmental science and pollution research international 2017;24(18):15254-15259

PMID: 28477256

Abstract

Genotoxicity is the ability of an agent to produce damage on the DNA molecule. Considering the strong evidence for a relationship between genetic damage and carcinogenesis, to elucidate the putative mechanisms of genotoxicity induced by fluoride are important to measure the degree of risk involved to human populations. The purpose of this article is to provide a comprehensive review on genotoxicity induced by fluoride on the basis of its mechanisms of action. In the last 10 years, all published data showed some evidence related to genotoxicity, which is due to mitochondrial disruption, oxidative stress, and cell cycle disturbances. However, this is an area that still requires a lot of investigation since the published data are not sufficient for clarifying the genotoxicity induced by fluoride. Certainly, the new information will be added to those already established for regulatory purposes as a safe way to promote oral healthcare and prevent oral carcinogenesis.

Address: Department of Pathology, Federal University of São Paulo, UNIFESP, Santos, SP, Brazil. [email protected].; Department of Biosciences, Federal University of São Paulo, UNIFESP, Santos, SP, Brazil. [email protected].; Departamento de Biociências, Universidade Federal de São Paulo, UNIFESP, Av. Ana Costa, 95, Vila Mathias, Santos, SP, 11060-001, Brazil. [email protected].; Department of Pathology, Federal University of São Paulo, UNIFESP, Santos, SP, Brazil.; Department of Biosciences, Federal University of São Paulo, UNIFESP, Santos, SP, Brazil.

Link outs

Free resources

Other Literature Sources:

Subscription / membership required

Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.