首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Neurobehavioral evaluations of mixtures of trichloroethylene, heptachlor, and di(2-ethylhexyl)phthlate in a full-factorial design.
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Neurobehavioral evaluations of mixtures of trichloroethylene, heptachlor, and di(2-ethylhexyl)phthlate in a full-factorial design.

机译:全成分设计中三氯乙烯,七氯和邻苯二甲酸二(2-乙基己基)酯的混合物的神经行为评估。

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One approach to the toxicological evaluation of chemical mixtures is to construct full dose-response curves for each compound in the presence of a range of doses of each of the other compounds, i.e., a factorial design. This study was undertaken as part of an interdisciplinary project to evaluate a mixture of three environmental pollutants. A full-factorial design was undertaken to determine the neurobehavioral consequences of short-term repeated exposure to five dose levels each of three chemicals, in order to characterize potential two- and three-way interactions. Adult female F344 rats received (p.o.) for 10 days either one of five doses of trichloroethylene, di(2-ethylhexyl)phthalate, or heptachlor, or else one of all possible chemical combinations. Neurobehavioral evaluations were conducted using motor activity and an abbreviated functional observational battery. Response-surface analysis was applied to each of the endpoints. Hypotheses were tested based on the estimated model parameters; of primary interest was the overall test for interaction among the three chemicals. In addition, an abbreviated design was created by fitting only a subset of the data to the model. In general, significant overall interactions that deviated from response additivity were detected for most endpoints (11 of 14). All of the interactions on the neurobehavioral endpoints showed either antagonism, or else an interaction that could not be fully characterized. Often the results of the abbreviated dataset analysis were not the same as for the full-factorial design. This study was extremely intensive, in terms of the number of rats and time required for conduct of the study as well as the data analysis. These results underscore the need for more economical approaches to evaluate the toxic effects of mixtures of chemicals.
机译:对化学混合物进行毒理学评估的一种方法是在每种其他化合物都存在一定剂量范围的情况下,即在析因设计的情况下,为每种化合物构建完整的剂量响应曲线。这项研究是跨学科项目的一部分,旨在评估三种环境污染物的混合物。进行全要素设计以确定短期重复暴露于三种化学物质各自的五个剂量水平的神经行为后果,以表征潜在的双向和三向相互作用。成年雌性F344大鼠接受(口服)5天三氯乙烯,邻苯二甲酸二(2-乙基己基)酯或七氯之一,或所有可能的化学组合之一,持续10天。使用运动活动和缩写的功能性观察电池进行神经行为评估。将响应面分析应用于每个端点。基于估计的模型参数对假设进行了测试;主要关注的是对三种化学物质之间相互作用的整体测试。另外,通过仅将数据的一部分拟合到模型来创建缩写设计。通常,在大多数端点(14个中的11个)中都检测到了与响应加性不同的重要整体交互作用。神经行为端点上的所有相互作用都显示出拮抗作用,或者是无法完全表征的相互作用。缩写数据集分析的结果通常与全因子设计的结果不同。就进行研究以及数据分析所需的大鼠数量和时间而言,这项研究非常密集。这些结果强调了需要更经济的方法来评估化学品混合物的毒性作用。

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