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Mutagenicity of polyaromatic hydrocarbons by chemical models for cytochrome P450 in Ames assay
Authors:Keiko Inami  Satoko Ishikawa  Masataka Mochizuki
Institution:1. Kyoritsu University of Pharmacy , Shibakoen 1-5-30, Minato-ku, Tokyo, 105-8512, Japan;2. Division of Pharmaceutical Organic Chemistry , Faculty of Pharmaceutical Sciences, Tokyo University of Science , Yamazaki 2641, Noda-shi, Chiba, 278-8510, Japan inami@rs.noda.tus.ac.jp;4. Keio University , Shibakoen 1-5-30, Minato-ku, Tokyo, 105-8512, Japan;5. Division of Pharmaceutical Organic Chemistry , Faculty of Pharmaceutical Sciences, Tokyo University of Science , Yamazaki 2641, Noda-shi, Chiba, 278-8510, Japan
Abstract:DNA damage is an important step in carcinogenesis. The Ames assay is a short-term screening of carcinogens that induce DNA damage. Most carcinogens require enzymatic activation through oxidation by cytochrome P450 (CYP450) in the presence of S9 mix. A combination of iron (Fe)(III) porphyrin and an oxidant is also able to oxidize compounds as an alternative metabolic pathway to CYP450. Previously it was reported that a chemical model containing a water-soluble 5,10,15,20-tetrakis(1-methylpyridinium4-yl)porphyrinatoiron(III) chloride (4-MPy) and tert-butyl hydroperoxide (t-BuOOH) activated aromatic amines and amides. In this study, a chemical model composed of an Fe porphyrin, water-insoluble 5,10,15,20-tetrakis(pentafluorophenyl)porphyrinatoiron(III) chloride (F5P) or water-soluble 4-MPy was optimized with an oxidant – t-BuOOH, magnesium monoperoxyphthalate (MPPT), or iodosylbenzene (PhIO). Subsequently the mutagenicity of benzoa]pyrene (Ba]P) and chrysene in Salmonella typhimurium TA strains was compared. Ba]P was activated by a combination of F5P or 4-MPy plus MPPT or PhIO in S. typhimurium TA1538. The Ba]P-induced mutagenicity with F5P plus oxidant was higher than 4-MPy plus oxidant. Mutagenicity of chrysene, a tetracyclic aromatic hydrocarbon, was not detected in the presence of F5P/PhIO in S. typhimurium TA98, but was activated in the presence of F5P/MPPT. The F5P/MPPT activated other polyaromatic hydrocarbons (PAH) in the S. typhimurium TA98 assay including dibenza,c]anthracene, dibenza,h]anthracene, 3-methylcholanthrene, and benzoa]anthracene. The results indicated that the F5P/MPPT was the most efficient model for detecting PAH-induced mutagenicity in the Ames assay.
Keywords:polyaromatic hydrocarbon  metabolic activation  chemical model  cytochrome P450  Ames assay
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