Comparison of DNA-repair synthesis,chromosome aberrations and induction of micronuclei in cultured human fibroblast,Chinese hamster ovary and central mudminnow (Umbra limi) cells exposed to chemical mutagens |
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Authors: | Douglas G. Walton Alfred B. Acton Hans F. Stich |
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Affiliation: | Environmental Carcinogenesis Unit, British Columbia Cancer Research Centre, 601 West 10th Avenue, Vancouver, BC V5Z 1L3, Canada |
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Abstract: | ![]() In mammalian cells it has previously been observed that low DNA-repair activity is correlated wtih high chromosome-aberration frequency. Since fish cells typically express comparatively low amounts of DNA repair, the chromosome aberration test holds potential as a sensitive fish genotoxicity assay. A comparison of in vitro DNA-repairm activity showed HF > CHO > Ul-H = Ul-F following exposure to MNNG and 4NQO. Although peak chromosome-aberration frequency varied CHO > Ul-H > HF, at comparable mutagen concentrations the relationship was Ul-H > HF > CHO following 4NQO exposure and Ul-H > HF = CHO after MNNG exposure. Analyzing for chromosome aberrations at high mutagen concentrations was not possible due t mitotic inhibition/toxicity which varied according to the mutagen and cell line. Micronuclei frequency varied CHO > Ul-H > HF = Ul-F. In CHO and Ul-H, a 10–15 fold increase over the controls compares with only a 2–3 fold increase for HF and Ul-F. These differences are likely related, in part, to the cell-division rate of each line and the coincident repair of the damaged DNA. Reasons for the lack of negative correlation between DNA repair and chromosomal damage in fish cells are discussed. |
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Keywords: | CHO Chinese hamster ovary DMSO dimethyl sulfoxide HF human fibroblast MNNG 4NQO 4-nitroquinoline 1-oxide Ul-F Ul-H |
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