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Oxidative DNA damage in fetal tissues after transplacental exposure to 3 '-azido-3 '-deoxythymidine (AZT)

  1. Author:
    Bialkowska, A.
    Bialkowski, K.
    Gerschenson, M.
    Diwan, B. A.
    Jones, A. B.
    Olivero, O. A.
    Poirier, M. C.
    Anderson, L. M.
    Kasprzak, S.
    Sipowicz, M. A.
  2. Author Address

    Anderson LM NCI, Comparat Carcinogenesis Lab, Frederick Canc Res & Dev Ctr Frederick, MD 21702 USA NCI, Comparat Carcinogenesis Lab, Frederick Canc Res & Dev Ctr Frederick, MD 21702 USA NCI, Intramural Res Support Program, SAIC Frederick Inc, Frederick Canc Res & Dev Ctr Frederick, MD 21702 USA Univ Sch Med Sci, Dept Clin Biochem Bydgoszcz Poland NCI, Cellular Carcinogenesis & Tumor Promot Lab Bethesda, MD 20892 USA
    1. Year: 2000
  1. Journal: Carcinogenesis
    1. 21
    2. 5
    3. Pages: 1059-1062
  2. Type of Article: Article
  1. Abstract:

    The nucleoside analogue 3'-azido-3'-deoxythymidine (AZT) has been used successfully to reduce the incidence of transplacental and perinatal transmission of the HIV virus. However, prolonged treatment with high doses of AZT is utilized in this therapy, and AZT has been found to be a perinatal carcinogen in mice, Any possible perinatal carcinogenic side effects in the human can best be managed if the mechanism is understood. AZT targets mitochondria and might cause increased intracellular production of reactive oxygen species (ROS), We tested whether transplacental AZT may cause oxidative damage in nuclear DNA of fetal tissues. CD-1 Swiss pregnant mice were treated with the transplacental carcinogenesis regimen (25 mg/day AZT, for gestation days 12-18) and tissues collected on the day of birth. Significant increases in 8-oxo-2'-deoxyguanosine (8-oxo-dG) were found in the livers, a target tissue for transplacental carcinogenesis, and in the kidneys. A nonsignificant increase occurred in brain, with no change in lung. Tissues were also obtained from fetal patas monkeys (Erythrocebus patas), whose mothers had received 10 mg AZT/day during the last half of gestation. Although limited numbers of samples were available, possible increases in 8-oxo-dG were noted, relative to controls, for placenta and for fetal lung and brain (P = 0.055 for treatment-related increases in these tissues). These results suggest that an increase in reactive oxygen species could contribute to the mechanism of transplacental carcinogenesis by AZT in mice, and that this may also occur in primates. [References: 29]

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