CNRS UMR 5558, Laboratoire de Biométrie et Biologie Evolutive, Université de Lyon, Université Lyon 1, 69100, Villeurbanne, France.
Environ Sci Pollut Res Int. 2022 Apr;29(20):29244-29257. doi: 10.1007/s11356-021-15042-7. Epub 2021 Jul 13.
In the European Union, more than 100,000 man-made chemical substances are awaiting an environmental risk assessment (ERA). Simultaneously, ERA of these chemicals has now entered a new era requiring determination of risks for physiologically diverse species exposed to several chemicals, often in mixtures. Additionally, recent recommendations from regulatory bodies underline a crucial need for the use of mechanistic effect models, allowing assessments that are not only ecologically relevant, but also more integrative, consistent and efficient. At the individual level, toxicokinetic-toxicodynamic (TKTD) models are particularly encouraged for the regulatory assessment of pesticide-related risks on aquatic organisms. In this paper, we first briefly present a classical dose-response model to showcase the on-line MOSAIC tool, which offers all necessary services in a turnkey web platform, whatever the type of data analyzed. Secondly, we focus on the necessity to account for the time-dimension of the exposure by illustrating how MOSAIC can support a robust calculation of bioaccumulation metrics. Finally, we show how MOSAIC can be of valuable help to fully complete the EFSA workflow regarding the use of TKTD models, especially with GUTS models, providing a user-friendly interface for calibrating, validating and predicting survival over time under any time-variable exposure scenario of interest. Our conclusion proposes a few lines of thought for an easier use of modelling in ERA.
在欧盟,有超过 10 万种人为化学物质有待进行环境风险评估(ERA)。与此同时,这些化学物质的 ERA 现在已经进入了一个新时代,需要确定接触多种化学物质(通常是混合物)的生理多样化物种的风险。此外,监管机构的最新建议强调了迫切需要使用机械效应模型,允许进行不仅具有生态相关性,而且更具综合性、一致性和高效性的评估。在个体层面上,毒代动力学-毒效动力学(TKTD)模型特别鼓励用于对水生生物的与农药相关的风险进行监管评估。在本文中,我们首先简要介绍了一个经典的剂量-反应模型,以展示在线 MOSAIC 工具,无论分析的数据类型如何,该工具都在一个交钥匙式的网络平台中提供了所有必要的服务。其次,我们重点介绍了通过说明 MOSAIC 如何支持稳健计算生物累积指标来考虑暴露的时间维度的必要性。最后,我们展示了 MOSAIC 如何为 EFSA 关于使用 TKTD 模型(特别是 GUTS 模型)的工作流程提供有价值的帮助,为在任何感兴趣的时变暴露场景下对生存进行校准、验证和预测提供了用户友好的界面。我们的结论提出了一些思路,以更轻松地在 ERA 中使用建模。