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Specific DNA adducts induced by some mono-substitued epoxides in vitro and in vivo

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CHEMICO-BIOLOGICAL INTERACTIONS
卷 129, 期 3, 页码 209-229

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ELSEVIER IRELAND LTD
DOI: 10.1016/S0009-2797(00)00206-4

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biomarkers; DNA adducts; epoxides; mutagenicity

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Alkyl epoxides are important intermediates in the chemical industry. They are also formed in vivo during the detoxification of alkenes. Alkyl epoxides have shown genotoxicity in many toxicology assays which has been associated with their covalent binding to DNA. Here aspects of the formation and properties of DNA adducts, induced by some industrially important alkenes and mono-substituted epoxides are discussed. These include propylene oxide, epichlorohydrin, allyl glycidyl ether and the epoxy metabolites of styrene and butadiene. The major DNA adducts formed by epoxides are 7-substituted guanines, 1- and 3-substituted adenines and 3-substituted cytosines. In addition, styrene oxide and butadiene monoepoxide are able to modify exocyclic sites in the DNA bases, the sites bring in the case of styrene oxide N-2- and O-6-positions of guanine, N-6-adenine as well as N-4-and O-2-cytosine. In vivo the main adduct is the 7-substituted guanines. The 1-substituted adenines have also shown marked levels, and these adducts should also be targets in biomonitoring of human exposures. Due to its low mutagenicity, 7-substituted guanines are considered as a surrogate marker for other mutagenic lesions, e.g. those of 1-adenine or 3-uracil adducts. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved.

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