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DNA adducts of 2-amino-3-methylimidazo

  1. Author:
    Josyula, S.
    Lu, L. J. W.
    Salazar, J. J.
    Nerurkar, P. V.
    Jones, A. B.
    Grady, J. J.
    Snyderwine, E. G.
    Anderson, L. M.
  2. Author Address

    Anderson LM Bldg 538 Frederick, MD 21701 USA NCI, Frederick Canc Res & Dev Ctr, Comparat Carcinogenesis Lab Frederick, MD 21702 USA Univ Texas, Med Branch, Dept Prevent Med & Community Hlth Galveston, TX 77555 USA NCI, Expt Carcinogenesis Lab Bethesda, MD 20892 USA
    1. Year: 2000
  1. Journal: Toxicology and Applied Pharmacology
    1. 166
    2. 3
    3. Pages: 151-160
  2. Type of Article: Article
  1. Abstract:

    Transplacental genotoxicity of the heterocyclic amine food-derived mutagen/carcinogen 2-amino-3-methylimidazo[4,5-f]quinoline (IQ) has been investigated by P-32-postlabeling assay for IQ-DNA adducts in maternal liver, placenta, and several fetal tissues of patas monkeys, after exposure to 15, 35, or 50 mg/kg IQ near the end of gestation or to the highest dose in the first or second trimester. Dose-dependent adduct formation occurred in all tissues, with the highest levels occurring in maternal liver. Adduct amounts were similar among fetal tissues and placenta, except for lower levels in fetal brain and slightly more adducts in fetal liver. Adducts in placenta, fetal liver, lung, kidney, skin, and adrenal gland, but not in maternal liver or fetal brain, increased! significantly as gestation progressed. Pretreatment with phenobarbital, which induces CYP enzymes that detoxify IQ, decreased adducts in maternal liver and possibly placenta, but not in fetal tissues. The CYP inducer P-naphthoflavone caused a significant increase in IQ-DNA adducts in fetal lungs. Regression analysis suggested that IQ activation in maternal and fetal liver and possibly placenta contributed to adduct formation in fetal tissues; adducts in placenta and/or fetal liver were strong predictors for those in most fetal tissues. The results indicate that exposure of pregnant primates to IQ results in DNA adduct formation in most fetal tissues, especially late in gestation; that upregulation of maternal detoxification does not provide fetal protection; and that adducts in placenta indicate adduct levels in fetal tissues. (C) 2000 Academic Press. [References: 60]

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