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首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Human cell line toxicity of binary and ternary chemical mixtures in comparison to individual toxic effects of their components.
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Human cell line toxicity of binary and ternary chemical mixtures in comparison to individual toxic effects of their components.

机译:二元和三元化学混合物对人体细胞系的毒性与其成分的单独毒性作用相比。

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摘要

Contaminated site projects involve health risk assessment procedures that must consider potential interactive effects of present contaminants. In order to establish a quick and reliable method that accounts for smaller than additive, additive, or greater than additive toxic effects, this study compared the cytotoxicity of 34 binary and ternary chemical mixtures of four structurally different chemicals to HeLa cells. Further, five blind samples of these mixtures or their components were tested to determine the ability to identify unknown mixtures. The colorimetric MTS in vitro cytotoxicity assay was used to detect cytotoxic effects after the cells were exposed for 1 h to serial dilutions of the mixtures. Experimental cytotoxicity data were compared and set against data predicted by a mathematical algorithm. They mainly showed additive effects of the components in mixture but also identified smaller than additive and greater than additive effects. A subjective classification scheme allowed evaluation of the toxicity of the blind samples in comparison to results from the study on binary and ternary mixtures tested before. This scheme focused on quantitative cytotoxicity data as well as on the slope of the concentration-effect curves and demonstrated the use of the MTS assay for human health risk assessments in the context of contaminated sites.
机译:受污染的现场项目涉及健康风险评估程序,该程序必须考虑当前污染物的潜在交互作用。为了建立一种快速可靠的方法,说明其毒性小于加成,加成或大于加成,本研究比较了四种结构不同化学物质的34种二元和三元化学混合物对HeLa细胞的细胞毒性。此外,对这些混合物或其组分的五个盲样品进行了测试,以确定鉴定未知混合物的能力。在将细胞暴露于混合物的系列稀释液中1小时后,使用比色MTS体外细胞毒性测定法检测细胞毒性作用。比较了实验细胞毒性数据,并将其与数学算法预测的数据进行比较。他们主要显示了混合物中各组分的加和作用,但也确定了小于加和大于加和作用。与以前对二元和三元混合物的研究结果相比,主观分类方案可以评估盲样品的毒性。该方案侧重于定量细胞毒性数据以及浓度效应曲线的斜率,并证明了在受污染场所的背景下,将MTS分析用于人类健康风险评估。

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