DNA damage and DNA adduct formation in rat tissues following oral administration of acrylamide

被引:79
作者
Manière, I
Godard, T
Doerge, DR
Churchwell, MI
Guffroy, M
Laurentie, M
Poul, JM
机构
[1] Agence Francaise Secur Sanitaire Aliments, Lab Etud Rech Medicaments Vet & Desinfectants, F-35302 Fougeres, France
[2] Agence Francaise Secur Sanitaire Aliments, Agence Natl Medicament Vet, F-35302 Fougeres, France
[3] Natl Ctr Toxicol Res, Div Biochem Toxicol, Jefferson, AR 72079 USA
[4] Univ Paris 13, Ctr Rech, Aventis Pharma, Vitry Sur Seine, France
关键词
acrylamide; DNA damage; comet assay; DNA adducts; in vivo; rat;
D O I
10.1016/j.mrgentox.2004.10.012
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Acrylamide is present as a contaminant in the human diet in heated food products. It has been found to be carcinogenic in laboratory rats and has been classified as probably carcinogenic in humans. In order to clarify the possible involvement of a primary genotoxic mechanism in acrylamide-induced carcinogenicity, both the presence of DNA damage, measured by the comet assay, and the formation of N7-(2-carbamoyl-2-hydroxyethyl)guanine (N7-GA-Gua) and N3-(2-carbamoyl-2-hydroxyethyl)adenine (M-GA-Ade), derived from reaction of the active metabolite glycidamide (GA) with the DNA, analyzed by LUMS/MS, were assessed in selected rat tissues. Rats were administered with single oral doses of acrylamide (18, 36 or 54 mg/kg body weight (b.w.) and the organs (blood leukocytes, brain, bone marrow, liver, testes and adrenals) were sampled at different times after treatment. Results from GA-induced DNA adduct measurements indicated a relatively even organ distribution of the adducts in brain, testes and liver. Organ-specificity in acrylamide carcinogenesis can therefore not be explained by a selective accumulation of GA-DNA adducts in the target organs, at least not after a single dose exposure. The DNA adduct profiles and half-lives were similar in the different organs; except that the N3-GA-Ade adduct was more rapidly removed from tissues than the N7-GA-Gua adduct. Increased extent of DNA migration, as measured by the in vivo rat comet assay, was found in brain and testes, and these specific results seem to be in accordance with the known organ-specificity in acrylamide carcinogenesis in rat. Only weak and transient DNA damage was recorded in the liver, bone marrow and adrenals. The DNA-damaging effect of the compound observed in the blood leukocytes could be a simple biomarker of acrylamide exposure and genotoxicity. (C) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:119 / 129
页数:11
相关论文
共 50 条
  • [41] Estragole: DNA adduct formation in primary rat hepatocytes and genotoxic potential in HepG2-CYP1A2 cells
    Schulte-Hubbert, Ruth
    Kupper, Jan-Heiner
    Thomas, Adam D.
    Schrenk, Dieter
    TOXICOLOGY, 2020, 444
  • [42] Differential oxidative stress and DNA damage in rat brain regions and blood following chronic arsenic exposure
    Mishra, D.
    Flora, S. J. S.
    TOXICOLOGY AND INDUSTRIAL HEALTH, 2008, 24 (04) : 247 - 256
  • [43] Ochratoxin A induces oxidative DNA damage in liver and kidney after oral dosing to rats
    Kamp, HG
    Eisenbrand, G
    Janzowski, C
    Kiossev, J
    Latendresse, JR
    Schlatter, J
    Turesky, RJ
    MOLECULAR NUTRITION & FOOD RESEARCH, 2005, 49 (12) : 1160 - 1167
  • [44] Borneol administration protects primary rat hepatocytes against exogenous oxidative DNA damage
    Horvathova, Eva
    Kozics, Katarina
    Srancikova, Annamaria
    Hunakova, Lubica
    Galova, Eliska
    Sevcovicova, Andrea
    Slamenova, Darina
    MUTAGENESIS, 2012, 27 (05) : 581 - 588
  • [45] Estragole DNA adduct formation in different liver cell models
    Yang, S.
    Wesseling, S.
    Rietjens, I. M. C. M.
    TOXICOLOGY LETTERS, 2019, 314 : S127 - S127
  • [46] Differences between blood and liver aromatic DNA adduct formation
    Telli-Karakoç, F
    Gaines, AF
    Hewer, A
    Phillips, D
    ENVIRONMENT INTERNATIONAL, 2001, 26 (03) : 143 - 148
  • [47] Creating context for the use of DNA adduct data in cancer risk assessment: II. Overview of methods of identification and quantitation of DNA damage
    Himmelstein, Matthew W.
    Boogaard, Peter J.
    Cadet, Jean
    Farmer, Peter B.
    Kim, James H.
    Martin, Elizabeth A.
    Persaud, Rudranath
    Shuker, David E. G.
    CRITICAL REVIEWS IN TOXICOLOGY, 2009, 39 (08) : 679 - 694
  • [48] A role for mismatch repair in control of DNA ploidy following DNA damage
    Strathdee, G
    Sansom, OJ
    Sim, A
    Clarke, AR
    Brown, R
    ONCOGENE, 2001, 20 (15) : 1923 - 1927
  • [49] A role for mismatch repair in control of DNA ploidy following DNA damage
    Gordon Strathdee
    Owen J Sansom
    Alyson Sim
    Alan R Clarke
    Robert Brown
    Oncogene, 2001, 20 : 1923 - 1927
  • [50] Chicken Fetal Liver DNA Damage and Adduct Formation by Activation-Dependent DNA-Reactive Carcinogens and Related Compounds of Several Structural Classes
    Williams, Gary M.
    Duan, Jian-Dong
    Brunnemann, Klaus D.
    Iatropoulos, Michael J.
    Vock, Esther
    Deschl, Ulrich
    TOXICOLOGICAL SCIENCES, 2014, 141 (01) : 18 - 28