Literature DB >> 27338305

Differential genotoxicity of acrylamide in the micronucleus and Pig-a gene mutation assays in F344 rats and B6C3F1 mice.

Cheryl A Hobbs, Jeffrey Davis, Kim Shepard, Nikolai Chepelev, Marvin Friedman1, Dennis Marroni1, Leslie Recio.   

Abstract

Acrylamide is used in many industrial processes and is present in a variety of fried and baked foods. In rodent carcinogenicity assays, acrylamide exposure leads to tumour formation at doses lower than those demonstrated to induce genotoxic damage. We evaluated the potential of acrylamide to induce structural DNA damage and gene mutations in rodents using highly sensitive flow cytometric analysis of micronucleus and Pig-a mutant frequencies, respectively. Male F344 rats and B6C3F1 mice were administered acrylamide in drinking water for 30 days at doses spanning and exceeding the range of acrylamide exposure tested in cancer bioassays-top dose of 12.0 and 24.0mg/kg/day in mice and in rats, respectively. A positive control, N-ethyl-N-nitrosourea, was administered at the beginning and end of the study to meet the expression time for the two DNA damage phenotypes. The results of the micronucleus and Pig-a assays were negative and equivocal, respectively, for male rats exposed to acrylamide at the concentrations tested. In contrast, acrylamide induced a dose-dependent increase in micronucleus formation but tested negative in the Pig-a assay in mice. Higher plasma concentrations of glycidamide in mice than rats are hypothesized to explain, at least in part, the differences in the response. Benchmark dose modelling indicates that structural DNA damage as opposed to point mutations is most relevant to the genotoxic mode of action of acrylamide-induced carcinogenicity. Moreover, the lack of genotoxicity detected at <6.0mg/kg/day is consistent with the notion that non-genotoxic mechanisms contribute to acrylamide-induced carcinogenicity in rodents.
© The Author 2016. Published by Oxford University Press on behalf of the UK Environmental Mutagen Society. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

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Year:  2016        PMID: 27338305     DOI: 10.1093/mutage/gew028

Source DB:  PubMed          Journal:  Mutagenesis        ISSN: 0267-8357            Impact factor:   3.000


  7 in total

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Authors:  Andrea Hartwig; Michael Arand; Bernd Epe; Sabine Guth; Gunnar Jahnke; Alfonso Lampen; Hans-Jörg Martus; Bernhard Monien; Ivonne M C M Rietjens; Simone Schmitz-Spanke; Gerlinde Schriever-Schwemmer; Pablo Steinberg; Gerhard Eisenbrand
Journal:  Arch Toxicol       Date:  2020-06-15       Impact factor: 5.153

2.  Assessment of the genotoxicity of acrylamide.

Authors:  Diane Benford; Margherita Bignami; James Kevin Chipman; Luisa Ramos Bordajandi
Journal:  EFSA J       Date:  2022-05-05

3.  Comprehensive interpretation of in vitro micronucleus test results for 292 chemicals: from hazard identification to risk assessment application.

Authors:  Byron Kuo; Marc A Beal; John W Wills; Paul A White; Francesco Marchetti; Andy Nong; Tara S Barton-Maclaren; Keith Houck; Carole L Yauk
Journal:  Arch Toxicol       Date:  2022-04-21       Impact factor: 6.168

Review 4.  Exposure assessment of process-related contaminants in food by biomarker monitoring.

Authors:  Ivonne M C M Rietjens; P Dussort; Helmut Günther; Paul Hanlon; Hiroshi Honda; Angela Mally; Sue O'Hagan; Gabriele Scholz; Albrecht Seidel; James Swenberg; Justin Teeguarden; Gerhard Eisenbrand
Journal:  Arch Toxicol       Date:  2018-01-04       Impact factor: 5.153

Review 5.  Revisiting the evidence for genotoxicity of acrylamide (AA), key to risk assessment of dietary AA exposure.

Authors:  Gerhard Eisenbrand
Journal:  Arch Toxicol       Date:  2020-06-03       Impact factor: 5.153

6.  Effect of sampling time on somatic and germ cell mutations induced by acrylamide in gpt delta mice.

Authors:  Soichiro Hagio; Naho Tsuji; Satoshi Furukawa; Kazuya Takeuchi; Seigo Hayashi; Yusuke Kuroda; Masamitsu Honma; Kenichi Masumura
Journal:  Genes Environ       Date:  2021-02-17

7.  Acrylamide Decreases Cell Viability, and Provides Oxidative Stress, DNA Damage, and Apoptosis in Human Colon Adenocarcinoma Cell Line Caco-2.

Authors:  Adriana Nowak; Małgorzata Zakłos-Szyda; Dorota Żyżelewicz; Agnieszka Koszucka; Ilona Motyl
Journal:  Molecules       Date:  2020-01-16       Impact factor: 4.411

  7 in total

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