首页> 外文期刊>Chemical research in toxicology >Mutagenic activity of surface soil and quantification of 1,3-, 1,6-, and 1,8-dinitropyrene isomers in soil in Japan.
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Mutagenic activity of surface soil and quantification of 1,3-, 1,6-, and 1,8-dinitropyrene isomers in soil in Japan.

机译:日本表层土壤的诱变活性和土壤中1,3-,1,6-和1,8-二硝基py异构体的定量。

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To clarify the mutagenic potential of nonagricultural surface soil in Japan, 110 soil samples were collected from five geographically different areas between November 1996 and March 1997, and organic extracts of the soil samples were examined by the Ames/Salmonella assay. Most of the soil extracts showed mutagenicity toward both strains TA98 and TA100 in the presence and/or absence of a mammalian metabolic activation system (S9 mix), suggesting that surface soil is largely contaminated with environmental mutagens. Soil samples collected at Hekinan, Kobe, and Osaka were highly mutagenic toward both strains, and their potencies toward TA98 without S9 mix were extremely high, inducing more than 12 000 revertants per gram of soil. On the other hand, soil samples from Muroran showed strong mutagenicity toward TA100 with S9 mix. Furthermore, 1, 3-dinitropyrene (DNP), 1,6-DNP, and 1,8-DNP in soil samples collected at 10 sampling sites in three metropolitan areas were quantified by fluorometric detection of the corresponding diaminopyrene isomers using high-performance liquid chromatography (HPLC). Three DNP isomers were detected in all soil samples, and the amounts of 1,3-, 1,6-, and 1,8-DNP isomers in the soil samples were 12-3270, 14-5587, and 13-6809 pg/g, respectively. The gross amount of three DNP isomers in surface soil collected at Hekinan was more than 10 ng per gram of soil. The highest contribution ratios of DNP isomers to the mutagenicity of soil extracts were observed for the samples collected at Osaka, and the total of the contribution ratios of three DNP isomers was about 50%. These results suggest that surface soil is largely contaminated with mutagenic compounds and that DNP isomers are one class of major mutagenic and carcinogenic compounds contaminating surface soil.
机译:为了弄清日本非农业表层土壤的诱变潜力,在1996年11月至1997年3月期间,从五个地理上不同的地区收集了110个土壤样品,并通过Ames /沙门氏菌测定法检测了土壤样品的有机提取物。在存在和/或不存在哺乳动物代谢激活系统(S9混合物)的情况下,大多数土壤提取物均对TA98和TA100菌株均具有致突变性,这表明表层土壤被环境诱变剂大量污染。从Hekinan,神户和大阪收集的土壤样品对这两种菌株均具有高度致突变性,并且在不使用S9混合物的情况下其对TA98的效价极高,每克土壤可诱导12000多种还原酶。另一方面,来自室兰市的土壤样品对含有S9混合物的TA100表现出强烈的致突变性。此外,通过使用高效液相色谱荧光检测相应的二氨基py异构体,对在三个大城市地区的10个采样点采集的土壤样品中的1,3-二硝基py(DNP),1,6-DNP和1,8-DNP进行了定量。色谱法(HPLC)。在所有土壤样品中检测到三种DNP异构体,土壤样品中1,3-,1,6-和1,8-DNP异构体的量分别为12-3270、14-5587和13-6809 pg / g,分别。在Hekinan收集的表层土壤中,三种DNP异构体的总量超过10 ng / g土壤。在大阪市收集的样品中,DNP异构体对土壤提取物诱变的贡献率最高,三种DNP异构体的贡献率之和约为50%。这些结果表明,表层土壤被致突变化合物大量污染,DNP异构体是一类主要污染表层土壤的致突变和致癌化合物。

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