• Title/Summary/Keyword: mitomycin C-induced chromosome aberration

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Effect of Brown Rice Extract on Mitomycin C-Induced Chromosome Aberration in Cultured CHL Cells (현미 추출물이 Mitomycin C로 유발된 CHL 세포의 염색체 이상에 미치는 영향)

  • Chun, Hyang-Sook;Kim, In-Ho;Kim, Hyun-Jung
    • Korean Journal of Food Science and Technology
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    • v.27 no.6
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    • pp.1003-1007
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    • 1995
  • The effect of brown rice extract on mitomycin C(MMC)-induced chromosome aberration was examined in cultured Chinese hamster lung(CHL) cells, after induction of chromosome aberration and mitotic index in CHL cells cultured with MMC were observed. There were no significant differences between mitotic indices of CHL cells treated with DMSO, and MMC and brown rice extract. The frequency of chromosome aberration showed dose-dependent relationship in CHL cells treated with $0.2{\sim}3.0\;{\mu}g$/assay of MMC. But chromosome aberrations could not be assayed Our to cytotoxicity of MMC when its concentrations were above $3.0\;{\mu}g$/assay. Chromatid type, especially gap and break, of chromosome aberration were most frequently observed. When CHL cells treated with $2.0\;{\mu}g$/assay of MMC and brown rice extracts of concentration ranging $0.75{\sim}10.0\;{\mu}g$/assay were incubated, frequencies of chromosome aberration induced by MMC were significantly decreased at above concentrations(p<0.01, p<0.05). As concentration of brown rice extract was increased, frequencies of chromosome aberration was decreased $7{\sim}30%$, in some irregularity.

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Genetic Toxicity Study of YH1715 Series, Antifungal Agents (YH1715계열 항진균제의 유전독성평가)

  • 하광원;오혜영;박장환;허옥순;손수정;한의식;이종영;김소희;강희일
    • Environmental Mutagens and Carcinogens
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    • v.18 no.2
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    • pp.93-97
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    • 1998
  • The results of chromosome aberration test in mammalian cells in culture (Chinese hamster lung fibroblast cells) showed no induction of structural and numerical aberrations by antifungal agents of YH1715 series regardless of metabolic activation. While positive control group (mitomycin C and benzo(a)pyrene) showed structural chromosome aberrations of 37% and 23%, respectively. The in vivo induction of micronuclei was measured in polychromatic erythrocytes in bone marrow of male ddY mouse given YH1715R and YH1729R at 1, 0.5, 0.25 g/kg by p.o. once. After 24 hours, animals were sacrificed and evaluated 40 the incidence of micronucleated polychromatic erythrocytes in whole erythrocytes. Although a positive response for induction of micronuclei in animals treated with mitomycin C demonstrated the sensitivity of the test system for detection of a chemical clastogen, YH1715R did not induce micronuclei in bone marrow of ddY male mice but induced cytotoxicity to bone marrow cells at the highest concentration (1 g/kg, p〈0.05), and YH1729R induced micronuclei in bone marrow of ddY male mice dose dependently (p<0.05) but did not induce cytotoxicity to bone marrow cells.

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Effects of carbendazim on DNA, gene and chromosome (살균제 carbendazim이 DNA, 유전자 및 염색체에 미치는 영향)

  • Lee, Je-Bong;Sung, Pil-Nam;Jeong, Mi-Hye;Shin, Jin-Sup;Kang, Kyu-Young
    • The Korean Journal of Pesticide Science
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    • v.8 no.4
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    • pp.288-298
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    • 2004
  • Benzimidazole pesticide carbendazim that is effective against a wide range of fungal plant pathogens is a protective, eradicant, and systemic fungicide. For genetic toxicity evaluation of carbendazim on DNA, genes and chromosome, were investigated with chromosome aberration, bacterial reverse mutation, micronucleus test in mouse born marrow and DNA damage assay by single cell microgel electrophoresis. Substitution and frameshift mutation were not induce at variable concentration of carbendazim on Ames test with or without rat liver microsomal activation. For the result of chromosome aberration test, numerical changes of chromosome were detected at the concentrations higher than $4.0{\mu}g/m{\ell}$, but structural aberration was not induced. Positive control, Mitomycin-C and captafol made a structural aberration, but numerical change of chromosome did not appear. In the micronucleus test for mouse born marrow, carbendazim was negative, but was weak positive in DNA damage assay by single cell microgel electrophoresis because of increased DNA moving length of 20% to control.