Oxidative DNA damage in fetal tissues after transplacental exposure to 3'-azido-3'-deoxythymidine (AZT). 2000

A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
Intramural Research Support Program, SAIC-Frederick Inc., Frederick Cancer Research and Development Center (FCRDC), Frederick, MD 21702, USA.

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'-deoxyguano- sine (8-oxo-dG) were found in the livers, a target tissue for transplacental carcinogenesis, and in the kidneys. A non-significant 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.

UI MeSH Term Description Entries
D008431 Maternal-Fetal Exchange Exchange of substances between the maternal blood and the fetal blood at the PLACENTA via PLACENTAL CIRCULATION. The placental barrier excludes microbial or viral transmission. Transplacental Exposure,Exchange, Maternal-Fetal,Exposure, Transplacental,Maternal Fetal Exchange
D011247 Pregnancy The status during which female mammals carry their developing young (EMBRYOS or FETUSES) in utero before birth, beginning from FERTILIZATION to BIRTH. Gestation,Pregnancies
D004249 DNA Damage Injuries to DNA that introduce deviations from its normal, intact structure and which may, if left unrepaired, result in a MUTATION or a block of DNA REPLICATION. These deviations may be caused by physical or chemical agents and occur by natural or unnatural, introduced circumstances. They include the introduction of illegitimate bases during replication or by deamination or other modification of bases; the loss of a base from the DNA backbone leaving an abasic site; single-strand breaks; double strand breaks; and intrastrand (PYRIMIDINE DIMERS) or interstrand crosslinking. Damage can often be repaired (DNA REPAIR). If the damage is extensive, it can induce APOPTOSIS. DNA Injury,DNA Lesion,DNA Lesions,Genotoxic Stress,Stress, Genotoxic,Injury, DNA,DNA Injuries
D005260 Female Females
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000882 Haplorhini A suborder of PRIMATES consisting of six families: CEBIDAE (some New World monkeys), ATELIDAE (some New World monkeys), CERCOPITHECIDAE (Old World monkeys), HYLOBATIDAE (gibbons and siamangs), CALLITRICHINAE (marmosets and tamarins), and HOMINIDAE (humans and great apes). Anthropoidea,Monkeys,Anthropoids,Monkey
D015215 Zidovudine A dideoxynucleoside compound in which the 3'-hydroxy group on the sugar moiety has been replaced by an azido group. This modification prevents the formation of phosphodiester linkages which are needed for the completion of nucleic acid chains. The compound is a potent inhibitor of HIV replication, acting as a chain-terminator of viral DNA during reverse transcription. It improves immunologic function, partially reverses the HIV-induced neurological dysfunction, and improves certain other clinical abnormalities associated with AIDS. Its principal toxic effect is dose-dependent suppression of bone marrow, resulting in anemia and leukopenia. AZT (Antiviral),Azidothymidine,3'-Azido-2',3'-Dideoxythymidine,3'-Azido-3'-deoxythymidine,AZT Antiviral,AZT, Antiviral,BW A509U,BWA-509U,Retrovir,3' Azido 2',3' Dideoxythymidine,3' Azido 3' deoxythymidine,Antiviral AZT,BWA 509U,BWA509U
D051379 Mice The common name for the genus Mus. Mice, House,Mus,Mus musculus,Mice, Laboratory,Mouse,Mouse, House,Mouse, Laboratory,Mouse, Swiss,Mus domesticus,Mus musculus domesticus,Swiss Mice,House Mice,House Mouse,Laboratory Mice,Laboratory Mouse,Mice, Swiss,Swiss Mouse,domesticus, Mus musculus
D018384 Oxidative Stress A disturbance in the prooxidant-antioxidant balance in favor of the former, leading to potential damage. Indicators of oxidative stress include damaged DNA bases, protein oxidation products, and lipid peroxidation products (Sies, Oxidative Stress, 1991, pxv-xvi). Anti-oxidative Stress,Antioxidative Stress,DNA Oxidative Damage,Nitro-Oxidative Stress,Oxidative Cleavage,Oxidative DNA Damage,Oxidative Damage,Oxidative Injury,Oxidative Nitrative Stress,Oxidative Stress Injury,Oxidative and Nitrosative Stress,Stress, Oxidative,Anti oxidative Stress,Anti-oxidative Stresses,Antioxidative Stresses,Cleavage, Oxidative,DNA Damage, Oxidative,DNA Oxidative Damages,Damage, DNA Oxidative,Damage, Oxidative,Damage, Oxidative DNA,Injury, Oxidative,Injury, Oxidative Stress,Nitrative Stress, Oxidative,Nitro Oxidative Stress,Nitro-Oxidative Stresses,Oxidative Cleavages,Oxidative DNA Damages,Oxidative Damage, DNA,Oxidative Damages,Oxidative Injuries,Oxidative Nitrative Stresses,Oxidative Stress Injuries,Oxidative Stresses,Stress Injury, Oxidative,Stress, Anti-oxidative,Stress, Antioxidative,Stress, Nitro-Oxidative,Stress, Oxidative Nitrative,Stresses, Nitro-Oxidative

Related Publications

A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
July 1999, Mutation research,
A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
April 1988, Acta crystallographica. Section C, Crystal structure communications,
A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
August 2003, Archives of biochemistry and biophysics,
A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
April 1993, Antimicrobial agents and chemotherapy,
A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
February 1990, AIDS research and human retroviruses,
A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
December 1999, Journal of acquired immune deficiency syndromes (1999),
A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
January 1989, Drug metabolism and disposition: the biological fate of chemicals,
A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
April 2001, Pharmaceutical research,
A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
November 1999, Toxicology and applied pharmacology,
A Bialkowska, and K Bialkowski, and M Gerschenson, and B A Diwan, and A B Jones, and O A Olivero, and M C Poirier, and L M Anderson, and K S Kasprzak, and M A Sipowicz
June 1994, The Journal of biological chemistry,
Copied contents to your clipboard!