首页> 外文期刊>Environmental toxicology and chemistry >CHEMICAL ACTIVITY-BASED ENVIRONMENTAL RISK ANALYSIS OF THE PLASTICIZER DI-ETHYLHEXYL PHTHALATE AND ITS MAIN METABOLITE MONO-ETHYLHEXYL PHTHALATE
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CHEMICAL ACTIVITY-BASED ENVIRONMENTAL RISK ANALYSIS OF THE PLASTICIZER DI-ETHYLHEXYL PHTHALATE AND ITS MAIN METABOLITE MONO-ETHYLHEXYL PHTHALATE

机译:增塑剂邻苯二甲酸二乙基己酯及其主要代谢物单乙基己基邻苯二甲酸酯基于化学活性的环境风险分析

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The present study applies a chemical activity-based approach to: 1) evaluate environmental concentrations of di-ethylhexyl phthalate (DEHP; n = 23 651) and its metabolite mono-ethylhexyl phthalate (MEHP; n = 1232) in 16 environmental media from 1174 studies in the United States, Canada, Europe, and Asia, and in vivo toxicity data from 934 studies in 20 species, as well as in vitro biological activity data from the US Environmental Protection Agency's Toxicity Forecaster and other sources; and 2) conduct a comprehensive environmental risk analysis. The results show that the mean chemical activities of DEHP and MEHP in abiotic environmental samples from locations around the globe are 0.001 and 10(-8), respectively. This indicates that DEHP has reached on average 0.1% of saturation in the abiotic environment. The mean chemical activity of DEHP in biological samples is on average 100-fold lower than that in abiotic samples, likely because of biotransformation of DEHP in biota. Biological responses in both in vivo and in vitro tests occur at chemical activities between 0.01 to 1 for DEHP and between approximately 10(-6) and 10(-2) for MEHP, suggesting a greater potency of MEHP compared with DEHP. Chemical activities of both DEHP and MEHP in biota samples were less than those causing biological responses in the in vitro bioassays, without exception. A small fraction of chemical activities of DEHP in abiotic environmental samples (i.e., 4-8%) and none (0%) for MEHP were within the range of chemical activities associated with observed toxicological responses in the in vivo tests. The present study illustrates the chemical activity approach for conducting risk analyses. (C) 2016 SETAC
机译:本研究采用基于化学活性的方法:1)从1174年开始,在16种环境介质中评估邻苯二甲酸二乙基己基酯(DEHP; n = 23 651)及其代谢产物邻苯二甲酸单乙基己基酯(MEHP; n = 1232)的环境浓度。在美国,加拿大,欧洲和亚洲进行的研究,以及来自934个研究的20种物种的体内毒性数据,以及来自美国环境保护局的毒性预报器和其他来源的体外生物活性数据; 2)进行全面的环境风险分析。结果表明,来自全球各地的非生物环境样品中DEHP和MEHP的平均化学活性分别为0.001和10(-8)。这表明DEHP在非生物环境中平均达到饱和度的0.1%。生物样品中DEHP的平均化学活性平均比非生物样品中低100倍,这可能是由于DEHP在生物区系中的生物转化。在体内和体外测试中,生物学反应都发生在DEHP的化学活性介于0.01到1之间以及MEHP的化学活性介于10(-6)和10(-2)之间的情况下,这表明与DEHP相比,MEHP的效力更高。生物样品中DEHP和MEHP的化学活性均小于在体外生物测定中引起生物反应的化学活性,无一例外。非生物环境样品中DEHP的化学活性的一小部分(即4-8%),而MEHP则没有(0%)在与体内测试中观察到的毒理反应相关的化学活性范围内。本研究说明了进行风险分析的化学活性方法。 (C)2016年SETAC

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