首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Assessing The Ecological Risk Of Soil Irrigated With Wastewater Using In Vitro Cell Bioassays
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Assessing The Ecological Risk Of Soil Irrigated With Wastewater Using In Vitro Cell Bioassays

机译:利用体外细胞生物测定法评估废水灌溉土壤的生态风险

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In the most recent research work, the accumulation of toxicants in soil was always assessed through concentration level of the target contaminants. However, assessments based on chemical analysis were limited in numbers and in their unpredictable bioavailability. An alternative assessment could be based on toxicity assessment. It means that a screening bioassay is a necessary tool for identifying and defining contaminants at the sites, which should warrant further attention. In the present study, three in vitro cell bioassays, including the SOS/umu bioassay for genotoxic effects, human estrogen receptor recombinant yeast bioassay for estrogenic effects, and ethoxyresorfin O-deethylase (EROD) with H4IIE rat hepatoma cells bioassay for Ah-receptor agonistic effects, were used for the evaluation of the accumulation of toxicants in soils irrigated with wastewater in the suburb of Beijing, China. The results indicated that there were significant increases of genotoxic, estrogenic, and Ah-receptor agonistic effects in soils irrigated with wastewater, as compared with soils irrigated with groundwater. There was the decreased effect gradient following the increase of the distances from the inlet of the wastewater. It was concluded that wastewater irrigation could cause accumulation of genotoxic, estrogenic, and Ah-receptor agonistic chemicals in soil.
机译:在最近的研究工作中,总是通过目标污染物的浓度水平来评估土壤中毒物的积累。但是,基于化学分析的评估数量有限,而且其生物利用度无法预测。另一种评估可以基于毒性评估。这意味着筛选生物测定法是识别和定义现场污染物的必要工具,应引起更多关注。在本研究中,进行了三种体外细胞生物测定,包括用于遗传毒性作用的SOS / umu生物测定,用于雌激素作用的人雌激素受体重组酵母生物测定以及带有H4IIE大鼠肝癌细胞的乙氧基间苯二酚O-脱乙基酶(EROD)用于Ah受体激动剂的生物测定。效应被用于评估北京郊区废水灌溉土壤中的有毒物质积累。结果表明,与地下水灌溉的土壤相比,废水灌溉的土壤在遗传毒性,雌激素和Ah受体激动作用方面有显着提高。随着距废水入口距离的增加,效应梯度减小。结论是,污水灌溉可能导致遗传毒性,雌激素和Ah受体激动剂在土壤中积累。

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