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Induction of unscheduled DNA synthesis and micronucleus formation in Syrian hamster embryo fibroblasts treated with cysteine S-conjugates of chlorinated hydrocarbons
Authors:Spyridon Vamvakas  Wolfgang Dekant  Dietmar Schiffmann  Dietrich Henschler
Affiliation:(1) Institut für Toxikologie, Universität Würzburg, Würzburg, Federal Republic of Germany;(2) Institut für Toxikologie, Versbacher Str. 9, D-8700 Wdrzburg, FRG
Abstract:S-(chloroethyl)-cysteine (CEC) and S-(1,2-dichlorovinyl)cysteine (DCVO) have been proposed as intermediates in the metabolic transformation of the carcinogens 1,2-dichloroethane and 1,1,2-trichloroethylene. We have tested the ability of CEC and DCVC to induce DNA repair and genotoxic effects at the chromosomal level by comparative assessment of unscheduled DNA synthesis induction and micronucleus formation in Syrian hamster embryo fibroblasts. CEC induced a potent and dose-dependent response in both assays, whereas DCVC treatment resulted in a comparatively weak induction of DNA repair and failed to raise micronucleus formation above control rates. Inhibition of cysteine conjugate gB-lyase diminished the effect of DCVC, but had no influence on the genotoxicity of CEC either in the unscheduled DNA synthesis or micronucleus assay.Abbreviations AOAA aminooxyacetic acid - CEC S-(chloroethyl)-cysteine; gB-lyase, cysteine conjugate beta-lyase - DCE 1,2-dichloroethane - DCVC S(1,2-dichlorovinyl)-cysteine - GSH glutathione - HU hydroxyurea - IBR IBR-modified Dulbecco's Eagle's reinforced medium - MN2 micronuclei/2,000 cells - 4-NQO 4-nitroquinoline-1-oxide - SHE Syrian hamster embryo fibroblasts; 3H-Thd, 3H-thymidine - TCE 1,1,2-trichloroethylene - UDS unscheduled DNA synthesis
Keywords:chlorinated hydrocarbons  cysteine conjugate gB-lyase  micronuclei  Syrian hamster embryo fibroblasts  unscheduled DNA synthesis
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