Literature DB >> 21701190

Contemporary biological markers of exposure to fluoride.

Andrew John Rugg-Gunn, Alberto Enrique Villa, Marília Rabelo Afonso Buzalaf.   

Abstract

Contemporary biological markers assess present, or very recent, exposure to fluoride: fluoride concentrations in blood, bone surface, saliva, milk, sweat and urine have been considered. A number of studies relating fluoride concentration in plasma to fluoride dose have been published, but at present there are insufficient data on plasma fluoride concentrations across various age groups to determine the 'usual' concentrations. Although bone contains 99% of the body burden of fluoride, attention has focused on the bone surface as a potential marker of contemporary fluoride exposure. From rather limited data, the ratio surface-to-interior concentration of fluoride may be preferred to whole bone fluoride concentration. Fluoride concentrations in the parotid and submandibular/sublingual ductal saliva follow the plasma fluoride concentration, although at a lower concentration. At present, there are insufficient data to establish a normal range of fluoride concentrations in ductal saliva as a basis for recommending saliva as a marker of fluoride exposure. Sweat and human milk are unsuitable as markers of fluoride exposure. A proportion of ingested fluoride is excreted in urine. Plots of daily urinary fluoride excretion against total daily fluoride intake suggest that daily urinary fluoride excretion is suitable for predicting fluoride intake for groups of people, but not for individuals. While fluoride concentrations in plasma, saliva and urine have some ability to predict fluoride exposure, present data are insufficient to recommend utilizing fluoride concentrations in these body fluids as biomarkers of contemporary fluoride exposure for individuals. Daily fluoride excretion in urine can be considered a useful biomarker of contemporary fluoride exposure for groups of people, and normal values have been published.
Copyright © 2011 S. Karger AG, Basel.

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Year:  2011        PMID: 21701190     DOI: 10.1159/000325137

Source DB:  PubMed          Journal:  Monogr Oral Sci        ISSN: 0077-0892


  12 in total

1.  Lebanese children are iodine deficient and urinary sodium and fluoride excretion are weak positive predictors of urinary iodine.

Authors:  Hala Ghattas; Sirine Francis; Carla El Mallah; Dareen Shatila; Karina Merhi; Sani Hlais; Michael Zimmermann; Omar Obeid
Journal:  Eur J Nutr       Date:  2015-12-09       Impact factor: 5.614

2.  "Borderline" fluorotic region in Serbia: correlations among fluoride in drinking water, biomarkers of exposure and dental fluorosis in schoolchildren.

Authors:  Evica Antonijevic; Zoran Mandinic; Marijana Curcic; Danijela Djukic-Cosic; Nemanja Milicevic; Mirjana Ivanovic; Momir Carevic; Biljana Antonijevic
Journal:  Environ Geochem Health       Date:  2015-09-30       Impact factor: 4.609

3.  Biomarkers of chronic fluoride exposure in groundwater in a highly exposed population.

Authors:  Tewodros Rango; Avner Vengosh; Marc Jeuland; Gary M Whitford; Redda Tekle-Haimanot
Journal:  Sci Total Environ       Date:  2017-04-13       Impact factor: 7.963

Review 4.  A Systematic Review and Meta-Analysis of the Relationship Between the Severity of Dental Fluorosis and Fluoride Biomarkers in Endemic Areas.

Authors:  Jesús Lavalle-Carrasco; Marcela Vergara-Onofre; Rogelio González-González; Ronell Bologna-Molina; Mario Alberto Isiordia-Espinoza; Enrique Gaona; Nelly Molina-Frechero
Journal:  Biol Trace Elem Res       Date:  2022-04-09       Impact factor: 3.738

5.  Seven years of external control of fluoride levels in the public water supply in Bauru, São Paulo, Brazil.

Authors:  Marília Afonso Rabelo Buzalaf; Camila Mascarenhas Moraes; Kelly Polido Kaneshiro Olympio; Juliano Pelim Pessan; Larissa Tercília Grizzo; Thelma Lopes Silva; Ana Carolina Magalhães; Rodrigo Cardoso de Oliveira; Sonia Groisman; Irene Ramires
Journal:  J Appl Oral Sci       Date:  2013 Jan-Feb       Impact factor: 2.698

Review 6.  Biomarkers for nutrient intake with focus on alternative sampling techniques.

Authors:  T Holen; F Norheim; T E Gundersen; P Mitry; J Linseisen; P O Iversen; C A Drevon
Journal:  Genes Nutr       Date:  2016-04-16       Impact factor: 5.523

Review 7.  Toxicity of fluoride: critical evaluation of evidence for human developmental neurotoxicity in epidemiological studies, animal experiments and in vitro analyses.

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Journal:  Arch Toxicol       Date:  2020-05-08       Impact factor: 5.153

8.  Fluoride exposure and pubertal development in children living in Mexico City.

Authors:  Yun Liu; Martha Téllez-Rojo; Howard Hu; Brisa N Sánchez; E Angeles Martinez-Mier; Niladri Basu; Adriana Mercado-García; Maritsa Solano-González; Karen E Peterson
Journal:  Environ Health       Date:  2019-03-29       Impact factor: 5.984

Review 9.  Chemical Aspects of Human and Environmental Overload with Fluorine.

Authors:  Jianlin Han; Loránd Kiss; Haibo Mei; Attila Márió Remete; Maja Ponikvar-Svet; Daniel Mark Sedgwick; Raquel Roman; Santos Fustero; Hiroki Moriwaki; Vadim A Soloshonok
Journal:  Chem Rev       Date:  2021-03-16       Impact factor: 60.622

10.  A concurrent exposure to arsenic and fluoride from drinking water in Chihuahua, Mexico.

Authors:  Carmen González-Horta; Lourdes Ballinas-Casarrubias; Blanca Sánchez-Ramírez; María C Ishida; Angel Barrera-Hernández; Daniela Gutiérrez-Torres; Olga L Zacarias; R Jesse Saunders; Zuzana Drobná; Michelle A Mendez; Gonzalo García-Vargas; Dana Loomis; Miroslav Stýblo; Luz M Del Razo
Journal:  Int J Environ Res Public Health       Date:  2015-04-24       Impact factor: 3.390

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