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一种使用狐尾藻通过毒代动力学和毒效动力学建模方法来预测短期接触磺酰脲类药物所产生的影响。

A toxicokinetic and toxicodynamic modeling approach using Myriophyllum spicatum to predict effects caused by short-term exposure to a sulfonylurea.

作者信息

Heine Simon, Schild Frederik, Schmitt Walter, Krebber Ralph, Görlitz Gerhard, Preuss Thomas G

机构信息

Institute for Environmental Research, RWTH Aachen University, Aachen, Germany.

Bayer Crop Science, Monheim am Rhein, Germany.

出版信息

Environ Toxicol Chem. 2016 Feb;35(2):376-84. doi: 10.1002/etc.3153. Epub 2015 Dec 15.

Abstract

Toxicokinetic and toxicodynamic models are a promising tool to address the effects of time-variable chemical exposure. Standard toxicity tests usually rely on static concentrations, but these chemical exposure patterns are unlikely to appear in the field, where time-variable exposure of chemicals is typical. In the present study, toxicodynamic processes were integrated into an existing model that includes the toxicokinetics and growth of the aquatic plant Myriophyllum spicatum, to predict the impact on plant growth of 2 iofensulfuron short-term exposure patterns. To establish a method that can be used with standard data from risk assessments, the toxicodynamics of iofensulfuron were based on effect data from a 14-d standard toxicity test using static concentrations. Modeling showed that the toxicokinetic and toxicodynamic growth model of M. spicatum can be successfully used to predict effects of short-term iofensulfuron exposure by using effect data from a standard toxicity test. A general approach is presented, in which time-variable chemical exposures can be evaluated more realistically without conducting additional toxicity studies.

摘要

毒代动力学和毒效动力学模型是解决随时间变化的化学物质暴露影响的一种很有前景的工具。标准毒性测试通常依赖于静态浓度,但这些化学物质暴露模式不太可能出现在实际环境中,在实际环境中,化学物质随时间变化的暴露是很典型的。在本研究中,将毒效动力学过程整合到一个现有的模型中,该模型包括水生植物狐尾藻的毒代动力学和生长情况,以预测两种短时间暴露模式下的碘磺隆对植物生长的影响。为了建立一种可用于风险评估标准数据的方法,碘磺隆的毒效动力学基于使用静态浓度的14天标准毒性测试的效应数据。建模表明,通过使用标准毒性测试的效应数据,狐尾藻的毒代动力学和毒效动力学生长模型可以成功用于预测碘磺隆短期暴露的影响。本文提出了一种通用方法,通过该方法可以在不进行额外毒性研究的情况下更实际地评估随时间变化的化学物质暴露情况。

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