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Evaluation of the Genetic Toxicity of Synthetic Chemicals (XVI) - in vitro Mouse Lymphoma Assay with 3 chemicals -  

Kim, Youn-Jung (Cellular and Molecular Toxicology Laboratory, Korea Institute of Science and Technology)
Ryu, Jae-Chun (Cellular and Molecular Toxicology Laboratory, Korea Institute of Science and Technology)
Publication Information
Molecular & Cellular Toxicology / v.2, no.4, 2006 , pp. 244-250 More about this Journal
Abstract
The detection of many synthetic chemicals used in industry that may pose a genetic hazard in our environment is of great concern at present. Since these substances are not limited to the original products, and enter the environment, they have become widespread environmental pollutants, thus leading to a variety of chemicals that possibly threaten the public health. In this respect, to regulate and to evaluate the chemical hazard will be important to environment and human health. The genotoxicity of 3 synthetic chemicals was evaluated in L5178Y $tk^{+/-}$ mouse lymphoma cells in vitro. 9H-carbazole (CAS No. 86-74-8) did not induce significant mutation frequencies both in the presence and absence of metabolic activation system. 1, 3-Dichloro-2-propanol (CAS No. 96-23-1) revealed a significant increase of mutation frequencies in the range of $625-373\;{\mu}g/mL$ in the absence of metabolic activation system and $157-79\;{\mu}g/mL$ in the presence of metabolic activation system. And also, fenpropathrin (CAS No. 64257-84-7) appeared the positive results only in the absence of metabolic activation system. Through the results of MLA tk assay with 3 synthetic chemicals in L5178Y cells in vitro, we may provide the important clues on the genotoxic potentials of these 3 chemicals.
Keywords
Mutation Frequency; in vitro Mouse Lymphoma Assay; Thymidine Kinase; 9H-carbazole; 1, 3-Dichloro-2-propanol; Fenpropathrin;
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1 Piasecki, A., Ruge, A. & Marquardt, H. Malignant transformation of mouse M2-fibroblasts by glycerol chlorohydrins contained in protein hydrolysates and commercial food. Nahrungsmittelinhaltsstoffe 40, 1054-1055 (1990)
2 Haratake, J., Furuta, A., Iwasa, T. & Wakasugi, C. Submassive hepatic necrosis induced by dichloropropanol. Liver 13, 123-129 (1988)   DOI   ScienceOn
3 Rasmussen, K., Booth, G.M., Lee, M.L. & Castle, R.N. Mutagenicity of hydroxyl-substituted carbazoles and dibenzothiophenes using the CHO/HGPRT assay. Environ. Toxicol. Chem. 10(9), 1133-1137 (1991)   DOI
4 Robinson, W.D. et al. Statistical evaluation of bacterial/mammalian fluctuation tests, in Statistical Evaluation of Mutagenicity Test Data (Kirkland, D.J., ed.). Cambridge University Press. Cambridge, UK, 102-140 (1990)
5 Ryu, J.C. et al. Evaluation of the genetic toxicity of synthetic chemicals (II). a pyrethroid insecticide, fenpropathrin. Arch. Pharm. Res. 19(4), 251-257 (1996a)   DOI
6 OECD. 'OECD guideline for the testing of chemicals, Documents 473, Genetic toxicology: in vitro mammalian cytogenetic test', Organization for Economic Co-operation and Development. Paris, France (1993)
7 Clive, D. et al. Specific gene mutations in L5178Y cells in culture: A report of the U.S. Environmental Protection Agency Gen-Tox Program. Mutat. Res. 115, 225-251 (1983)   DOI   ScienceOn
8 Sawyer, J., Moore, M.M., Clive, D. & Hozier, J. Cytogenetic characterization of the L5178Y $TK^{+/-}$ 3.7.2C mouse lymphoma cell line. Mutat. Res. 147, 243-253 (1985)   DOI
9 Applegate, M.L. et al. Molecular dissection of mutations at the heterozygous thymidine kinase locus in mouse lymphoma cells. Proc. Natl. Acad. Sci. U.S.A 87, 51-55 (1990)
10 Moore, M.M. et al. Analysis of trifluorothymidineresistant (TFTr) mutants of L5178Y TKC- mouse lymphoma cells. Mutat. Res. 151, 161-174 (1985)   DOI   ScienceOn
11 Blazak, W.F., Los, F.J., Rudd, C.J. & Caspary, W.J. Chromosome analysis of small and large L5178Y mouse lymphoma cell colonies. Comparison of trifluorothymidine-resistant and unselected cell colonies from mutagen-treated and control cultures. Mutat. Res. 224, 197-208 (1989)   DOI   ScienceOn
12 Hahn, H., Eder, E. & Deininger, C. Genotoxicity of 1, 3-dichloro-2-propanol in the SOS chromotest and in the Ames test. Elucidation of the genotoxic mechanism. Chemico-Biological Interactions 80, 73-88 (1991)   DOI   ScienceOn
13 Clements, J. Gene mutation assays in mammalian cells, In S. O'Hare and C. K. Atterwill (Ed.), Methods in Molecular Biology, Vol.43: in vitro Toxicity Testing Protocols. Humana Press Inc. Totowa, NJ. 277-286(1990)
14 Xue, W., La Dow, K. & Warshawsky, D. Synthesis, characterization, and mutagenicity of nitrated 7Hdibenzo[c,g]- carbazole and its phenolic derivatives. Chem. Res. Toxicol. 10, 432-438 (1997)   DOI   ScienceOn
15 Garriott, M.L., Casciano, D.A., Schechtman, L.M. & Probst, G.S. International workshop on mouse lymphoma assay testing practices and data interpretations. Environ. Mol. Mutagenesis 25, 162-164 (1995)   DOI   ScienceOn
16 Bulletin des Eidgenossischen Bundensamtes fur Gesundheitswesen no. 32/1989, 17.8.1989
17 Andrae, V. et al. Mutagenicity of nitro- and aminosubstituted carbazoles in Salmonella typhimurium. I. Monosubstituted derivatives of 9H-carbazole. Mutat. Res. 299, 63-73 (1993)
18 Lynn, R.K., Wong, K., Garviegould, C. & Kennish, J.M. Disposition of the flame retardant Tris (1,3- dichloro-2-propyl) phosphate in the rat. Drug, Metabolism and Disposition 9, 434-441 (1981)
19 Ryu, J.C. & Kim Y.J. Evaluation of the genetic toxicity of synthetic chemicals (IX)-a Synthetic Selective Herbicide, Pretilachlor-. J. Environ. Toxicol. 19(1), 93-100 (2004)
20 Hammond, A.H. & Fry, J.R. Effect of cyanmide on toxicity and glutathione depletion in rat hepatocyte cultures: differences between two dichloropropanol isomers. Chemico-Biological Interactions 122, 107-115 (1999)   DOI   ScienceOn
21 Ames, B.N., Durston, W.E., Yamasaki, E. & Lee, F.D. Carcinogens are mutagens: a simple test system combining liver homogenates for activation and bacteria for detection. Proc. Natl. Acad. Sci. U.S.A. 70, 2281-2285 (1973)
22 Ryu, J.C. et al. Genotoxicity Study of Bojungchisuptang, an oriental herbal decoction-in vitro chromosome aberration assay in chinese hamster lung cells and in vitro supravital-staining micronucleus assay with mouse peripheral reticulocytes. Arch. Pharm. Res. 21(4), 391-397 (1998b)   DOI   ScienceOn
23 Ames, B.N., McCann, J. & Yamasaki, E. Method for detecting carcinogens and mutagens with Salmonella/mammalian-microsome mutagenicity test. Mutat.Res. 31, 347-364 (1975)   DOI
24 Sofuni, T. et al. Detection of in vitro clastogens and spindle poisons by the mouse lymphoma assay using the microwell method: interim report of an international collaborative study. Mutagenesis 11(4), 349-355 (1996)   DOI   ScienceOn
25 Hoffmann, D., Rathkamp, G. & Woziwodzki, H. Chemical studies on tobacco smoke. VI. The determination of carbazole in cigarette smoke. Beitr. Tabakforsch. 4, 253-263 (1968)
26 Shiozaki, T. et al. Fulminant hepatitis following exposure to dichlorohydrin-report of two cases. Hum. Experi. Toxico. 13, 267-270 (1994)   DOI
27 Ryu, J.C. et al. Genotoxicity on Structural Derivatives of Sophoricoside, a Component of Sophora Japonica, in Bacterial and Mammalian cells. Mol. Cell. Toxicol. 1(3), 179-188 (2005)   과학기술학회마을
28 Talcott, R.E. & King, J. Mutagenic impurities in 1,3-dichloropropene preparations. J. Nat. Cancer Instit. 72, 1113-1116(1984)
29 Andraem, V. et al. Mutagenicity of nitro- and aminosubstituted carbazoles in Salmonella typhimurium. III. Methylated derivatives of 9H-carbazole. Mutat. Res. 389, 247-260 (1997)   DOI
30 Tice, R.R. et al. Single cell gel/comet assay: guidelines for in vitro and in vivo genetic toxicology testing. Environ. Mol. Mutagen. 35, 206-221 (2000)   DOI   ScienceOn
31 Weyan, E.H. et al. Bioassay of quinoline, 5-fluoroqunoline, carbazole, 9-ethylcarbazole and 9-ethylcarbazole in new born mice. Food Chem. Toxicol. 31(10), 707-715 (1993)   DOI   ScienceOn
32 Silhankova, L. et al. Mutagenicity of glycerol chlorohydrines and of their esters with higher fatty acids present in protein hydrolysates. Mutat. Res. 103(1), 77-81 (1982)   DOI   ScienceOn
33 Smith, T.M. & Stratton, G.W. Effects of synthetic pyrethroid insecticides of nontarget organisms. Residue Rev. 97, 93-120 (1986)
34 Sax, N.I. & Lewis Sr. R.J. (Eds.) Hawley's Condensed Chemical Dictionary, 11th ed., Van Nostrand Co., New York, 1987, pp. 216
35 Surralles, J. et al. Induction of micronuclei by five pyrethroid insecticides in whole-blood and isolated human lymphocyte cultures. Mutat. Res. 341(3), 169- 184 (1995)   DOI   ScienceOn
36 Frei, H. & Wurgler, F.E. The vicinal chloroalcohols 1, 3-dichloro-2-propanol (DC2P), 3-chloro-1, 2-propanediol (3CPD) and 2-chloro-1, 3-propanediol (2CPD) are not genotoxic in vivo in the wing spot test of Drosophila melanogaster. Mutat. Res. 394, 59-68 (1997)   DOI
37 Ryu, J.C. et al. Recent advanced toxicological methods for environmental hazardous chemicals. Kor. J. Environ. Toxicol. 14, 1-12 (1999)   DOI
38 IARC Monograph on Evaluation of the Carcinogenic Risk of Chemicals in Human. Part 1. Polynuclear Aromatic Compounds, vol. 32, 1983, pp. 239-246