Literature DB >> 7876430

Effect of aging on animal response to chronic fluoride exposure.

A J Dunipace1, E J Brizendine, W Zhang, M E Wilson, L L Miller, B P Katz, J M Warrick, G K Stookey.   

Abstract

This study was conducted to test the hypothesis that physiological changes which occur during aging increase the biological impact of fluoride and reduce the threshold of safe fluoride exposure. Four groups of rats were fed a low-fluoride diet (< 1.2 ppm) ad libitum and received 0, 5, 15, or 50 ppm fluoride in their drinking water. Animals were killed after three, six, 12, or 18 months of treatment. Blood and urine were monitored for biochemical markers of tissue function, and plasma, urine, feces, and representative tissues were analyzed for fluoride. In addition, bone marrow cells from animals killed after 18 months of treatment were examined for frequency of sister chromatid exchange (SCE), a marker of genetic damage. Study results indicated that, within treatment groups, fluoride intake, excretion, and retention did not change significantly between three and 18 months. Fluoride concentration in soft tissues did not change with treatment duration in the fluoride-treated animals. Mineralized tissue fluoride concentration and the total fluoride in the carcasses increased continually as the animals aged. In spite of significant, dose-related differences in tissue fluoride levels which occurred in all age groups in this study, there were no indications that increased fluoride in the tissues caused any adverse physiological or genotoxic effects. None of the monitored clinical "wellness" markers of tissue integrity and function was altered by fluoride in a clinically significant manner. Therefore, there was no evidence from this study that aging reduces the threshold of safe chronic fluoride exposure.

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Year:  1995        PMID: 7876430     DOI: 10.1177/00220345950740011201

Source DB:  PubMed          Journal:  J Dent Res        ISSN: 0022-0345            Impact factor:   6.116


  22 in total

1.  Apoptotic and Degenerative Changes in the Enteric Nervous System Following Exposure to Fluoride During Pre- and Post-natal Periods.

Authors:  Saba Sarwar; Javed Ahsan Quadri; Manoj Kumar; Seema Singh; Prasenjit Das; Tapas Chandra Nag; A Shariff
Journal:  Biol Trace Elem Res       Date:  2020-06-27       Impact factor: 3.738

2.  Assessment of teeth as biomarkers for skeletal fluoride exposure.

Authors:  A P G F Vieira; M Mousny; R Maia; R Hancock; E T Everett; M D Grynpas
Journal:  Osteoporos Int       Date:  2005-03-30       Impact factor: 4.507

3.  Association between fluoride exposure and cardiometabolic risk in peripubertal Mexican children.

Authors:  Yun Liu; Martha Téllez-Rojo; Brisa N Sánchez; Adrienne S Ettinger; Citlalli Osorio-Yáñez; Maritsa Solano; Howard Hu; Karen E Peterson
Journal:  Environ Int       Date:  2019-11-11       Impact factor: 9.621

4.  Effects of Fluoride on Bone in an Animal Model of Vitamin D Deficiency.

Authors:  Joseph Dian Bondu; M S Seshadri; R Selvakumar; Jude Joseph Fleming
Journal:  Indian J Clin Biochem       Date:  2017-11-13

5.  Maternal Fluoride Exposure Exerts Different Toxicity Patterns in Parotid and Submandibular Glands of Offspring Rats.

Authors:  Vinicius Ruan Neves Dos Santos; Maria Karolina Martins Ferreira; Leonardo Oliveira Bittencourt; Paulo Fernando Santos Mendes; Deiweson Souza-Monteiro; Karolyny Martins Balbinot; João de Jesus Viana Pinheiro; Senda Charone; Juliano Pelim Pessan; Rafael Rodrigues Lima
Journal:  Int J Mol Sci       Date:  2022-06-29       Impact factor: 6.208

6.  Proteomic analysis of gastrocnemius muscle in rats with streptozotocin-induced diabetes and chronically exposed to fluoride.

Authors:  Aline Lima Leite; Janete Gualiume Vaz Madureira Lobo; Heloísa Aparecida Barbosa da Silva Pereira; Mileni Silva Fernandes; Tatiani Martini; Fernanda Zucki; Dóris Hissako Sumida; Alfredo Rigalli; Marília Afonso Rabelo Buzalaf
Journal:  PLoS One       Date:  2014-09-02       Impact factor: 3.240

7.  Effects of single exposure of sodium fluoride on lipid peroxidation and antioxidant enzymes in salivary glands of rats.

Authors:  Paula Mochidome Yamaguti; Alyne Simões; Emily Ganzerla; Douglas Nesadal Souza; Fernando Neves Nogueira; José Nicolau
Journal:  Oxid Med Cell Longev       Date:  2013-04-27       Impact factor: 6.543

8.  Effect of exercise on fluoride metabolism in adult humans: a pilot study.

Authors:  Fatemeh V Zohoori; Alison Innerd; Liane B Azevedo; Gary M Whitford; Anne Maguire
Journal:  Sci Rep       Date:  2015-11-19       Impact factor: 4.379

9.  Proteomic analysis of liver in rats chronically exposed to fluoride.

Authors:  Heloísa Aparecida Barbosa da Silva Pereira; Aline de Lima Leite; Senda Charone; Janete Gualiume Vaz Madureira Lobo; Tania Mary Cestari; Camila Peres-Buzalaf; Marília Afonso Rabelo Buzalaf
Journal:  PLoS One       Date:  2013-09-17       Impact factor: 3.240

10.  Fluoride concentrations in the pineal gland, brain and bone of goosander (Mergus merganser) and its prey in Odra River estuary in Poland.

Authors:  Elzbieta Kalisinska; Irena Bosiacka-Baranowska; Natalia Lanocha; Danuta Kosik-Bogacka; Katarzyna Krolaczyk; Aleksandra Wilk; Katarzyna Kavetska; Halina Budis; Izabela Gutowska; Dariusz Chlubek
Journal:  Environ Geochem Health       Date:  2014-04-18       Impact factor: 4.609

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