Literature DB >> 17343837

Future directions in butadiene risk assessment and the role of cross-species internal dosimetry.

James A Swenberg1, Gunnar Boysen, Nadia Georgieva, Michael G Bird, R Jeffrey Lewis.   

Abstract

The 2005 International Symposium on the evaluation of butadiene and chloroprene health risks provided the opportunity to consider the past, present and future state of research issues for 1,3-butadiene. Considerable advancements have been made in our knowledge of exposure, metabolism, biomarkers of exposure and effect, and epidemiology. Despite this, uncertainties remain which will impact the human health risk assessment for current worker and environmental exposures. This paper reviews key aspects of recent studies and the role that biomarkers of internal dosimetry can play in addressing low to high exposure, gender, and cross-species differences in butadiene toxicity and metabolism. Considerable information is now available on the detection and quantification of protein adducts formed from the mono-, di- and dihydroxy-epoxide metabolites of butadiene. The diepoxide metabolite appears to play a key role in mutagenesis. Species differences in production of this critical metabolite are reflected by the diepoxybutane-specific hemoglobin adduct, pry-Val. To date, the pry-Val adduct has not been quantifiable in human blood samples from workers with cumulative occupational exposures up to 6.3 ppm-weeks; whereas, the pry-Val was quantifiable in the blood of mice and rats with similar cumulative exposures. Levels in mice were much higher than in rats. Further improvements in analytical sensitivity for the pyr-Val adduct are on the horizon. Epidemiology studies are also described and ongoing efforts promise to help bridge our understanding of past and future risks.

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Year:  2007        PMID: 17343837     DOI: 10.1016/j.cbi.2007.01.012

Source DB:  PubMed          Journal:  Chem Biol Interact        ISSN: 0009-2797            Impact factor:   5.192


  15 in total

Review 1.  Mercapturic acids: recent advances in their determination by liquid chromatography/mass spectrometry and their use in toxicant metabolism studies and in occupational and environmental exposure studies.

Authors:  Patricia I Mathias; Clayton B'hymer
Journal:  Biomarkers       Date:  2016-02-22       Impact factor: 2.658

2.  Quantitative analysis of trihydroxybutyl mercapturic acid, a urinary metabolite of 1,3-butadiene, in humans.

Authors:  Srikanth Kotapati; Brock A Matter; Amy L Grant; Natalia Y Tretyakova
Journal:  Chem Res Toxicol       Date:  2011-08-04       Impact factor: 3.739

3.  DNA-protein cross-linking by 1,2,3,4-diepoxybutane.

Authors:  Erin D Michaelson-Richie; Rachel L Loeber; Simona G Codreanu; Xun Ming; Daniel C Liebler; Colin Campbell; Natalia Y Tretyakova
Journal:  J Proteome Res       Date:  2010-09-03       Impact factor: 4.466

4.  Exocyclic deoxyadenosine adducts of 1,2,3,4-diepoxybutane: synthesis, structural elucidation, and mechanistic studies.

Authors:  Uthpala Seneviratne; Sergey Antsypovich; Melissa Goggin; Danae Quirk Dorr; Rebecca Guza; Adam Moser; Carrie Thompson; Darrin M York; Natalia Tretyakova
Journal:  Chem Res Toxicol       Date:  2010-01       Impact factor: 3.739

5.  Molecular dosimetry of 1,2,3,4-diepoxybutane-induced DNA-DNA cross-links in B6C3F1 mice and F344 rats exposed to 1,3-butadiene by inhalation.

Authors:  Melissa Goggin; James A Swenberg; Vernon E Walker; Natalia Tretyakova
Journal:  Cancer Res       Date:  2009-03-10       Impact factor: 12.701

6.  Quantitative high-performance liquid chromatography-electrospray ionization-tandem mass spectrometry analysis of the adenine-guanine cross-links of 1,2,3,4-diepoxybutane in tissues of butadiene-exposed B6C3F1 mice.

Authors:  Melissa Goggin; Chris Anderson; Soobong Park; James Swenberg; Vernon Walker; Natalia Tretyakova
Journal:  Chem Res Toxicol       Date:  2008-04-29       Impact factor: 3.739

7.  Alcohol dehydrogenase- and rat liver cytosol-dependent bioactivation of 1-chloro-2-hydroxy-3-butene to 1-chloro-3-buten-2-one, a bifunctional alkylating agent.

Authors:  Adnan A Elfarra; Xin-Yu Zhang
Journal:  Chem Res Toxicol       Date:  2012-11-07       Impact factor: 3.739

8.  Bis-butanediol-mercapturic acid (bis-BDMA) as a urinary biomarker of metabolic activation of butadiene to its ultimate carcinogenic species.

Authors:  Srikanth Kotapati; Dewakar Sangaraju; Amanda Esades; Lance Hallberg; Vernon E Walker; James A Swenberg; Natalia Y Tretyakova
Journal:  Carcinogenesis       Date:  2014-02-14       Impact factor: 4.944

9.  Configurational and Conformational Equilibria of N6-(2-Deoxy-d-erythro-pentofuranosyl)-2,6-diamino-3,4-dihydro-4-oxo-5- N-methylformamidopyrimidine (MeFapy-dG) Lesion in DNA.

Authors:  Stephanie N Bamberger; Chanchal K Malik; Markus W Voehler; Summer K Brown; Hope Pan; Tracy L Johnson-Salyard; Carmelo J Rizzo; Michael P Stone
Journal:  Chem Res Toxicol       Date:  2018-08-31       Impact factor: 3.739

Review 10.  Human exposure to selected animal neurocarcinogens: a biomarker-based assessment and implications for brain tumor epidemiology.

Authors:  Dora Il'yasova; Bridget J McCarthy; Serap Erdal; Joanna Shimek; Jennifer Goldstein; Daniel R Doerge; Steven R Myers; Paolo Vineis; John S Wishnok; James A Swenberg; Darell D Bigner; Faith G Davis
Journal:  J Toxicol Environ Health B Crit Rev       Date:  2009-03       Impact factor: 6.393

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