Literature DB >> 8607145

A physiologically based pharmacokinetic model for arsenic exposure. I. Development in hamsters and rabbits.

S Mann1, P O Droz, M Vahter.   

Abstract

A physiologically based pharmacokinetic model for exposure to inorganic arsenic in hamsters and rabbits has been developed. The model in its present state simulates three routes of exposure to inorganic arsenic: oral intake, intravenous injection, and intratracheal instillation. It describes the tissue concentrations and the urinary and fecal excretions of the four arsenic metabolites: inorganic As(III) and As(V), methylarsonic acid, and dimethylarsinic acid. The model consists of five tissue compartments, chosen according to arsenic affinities: liver, kidneys, lungs, skin, and others. The model is based on physiological parameters, which were scaled according to body weight. When physiological parameters were not available, the data for the model were obtained by fitting (tissue affinity, absorption rate, and metabolic rate constants). The excretions of the arsenic metabolites in urine and feces are well simulated with the model for both species. Further validation of the arsenic metabolite concentrations in the tissues and in vitro measurements of the tissue affinity constants are discussed.

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Year:  1996        PMID: 8607145     DOI: 10.1006/taap.1996.0052

Source DB:  PubMed          Journal:  Toxicol Appl Pharmacol        ISSN: 0041-008X            Impact factor:   4.219


  7 in total

1.  Arsenic exposure and toxicology: a historical perspective.

Authors:  Michael F Hughes; Barbara D Beck; Yu Chen; Ari S Lewis; David J Thomas
Journal:  Toxicol Sci       Date:  2011-07-12       Impact factor: 4.849

2.  Alteration of mammary gland development and gene expression by in utero exposure to arsenic.

Authors:  Daniela A Parodi; Morgan Greenfield; Claire Evans; Anna Chichura; Alexandra Alpaugh; James Williams; Mary Beth Martin
Journal:  Reprod Toxicol       Date:  2014-12-25       Impact factor: 3.143

3.  Pharmacokinetic modeling of arsenite uptake and metabolism in hepatocytes--mechanistic insights and implications for further experiments.

Authors:  Michael R Easterling; Miroslav Styblo; Marina V Evans; Elaina M Kenyon
Journal:  J Pharmacokinet Pharmacodyn       Date:  2002-06       Impact factor: 2.745

4.  Interaction effects of lead on bioavailability and pharmacokinetics of arsenic in the rat.

Authors:  Violet Diacomanolis; Barry N Noller; Jack C Ng
Journal:  Environ Geochem Health       Date:  2013-06-01       Impact factor: 4.609

5.  Mathematical model insights into arsenic detoxification.

Authors:  Sean D Lawley; Molly Cinderella; Megan N Hall; Mary V Gamble; H Frederik Nijhout; Michael C Reed
Journal:  Theor Biol Med Model       Date:  2011-08-26       Impact factor: 2.432

Review 6.  Arsenic toxicokinetic modeling and risk analysis: Progress, needs and applications.

Authors:  Elaina M Kenyon
Journal:  Toxicology       Date:  2021-05-07       Impact factor: 4.571

7.  Mathematical modeling of the effects of glutathione on arsenic methylation.

Authors:  Sean D Lawley; Jina Yun; Mary V Gamble; Megan N Hall; Michael C Reed; H Frederik Nijhout
Journal:  Theor Biol Med Model       Date:  2014-05-16       Impact factor: 2.432

  7 in total

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