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Risk-Based Approach in the Revised European Union Drinking Water Legislation: Opportunities for Bioanalytical Tools

机译:修订后的欧盟饮用水立法中基于风险的方法:生物分析工具的机会

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摘要

A plethora of in vitro bioassays are developed in the context of chemical risk assessment and clinical diagnostics to test effects on different biological processes. Such assays can also be implemented in effect-based monitoring (EBM) of (drinking) water quality alongside chemical analyses. Effects-based monitoring can provide insight into risks for the environment and human health associated with exposure to (unknown) complex, low-level mixtures of micropollutants, which fits in the risk-based approach that was recently introduced in the European Drinking Water Directive. Some challenges remain, in particular those related to selection and interpretation of bioassays. For water quality assessment, carcinogenesis, adverse effects on reproduction and development, effects on xenobiotic metabolism, modulation of hormone systems, DNA reactivity, and adaptive stress responses are considered the most relevant toxicological endpoints. An evaluation procedure of the applicability and performance of in vitro bioassays for water quality monitoring, based on existing information, has been developed, which can be expanded with guidelines for experimental evaluations. In addition, a methodology for the interpretation of in vitro monitoring data is required, because the sensitivity of specific in vitro bioassays in combination with sample concentration may lead to responses of chemicals (far) below exposure concentrations that are relevant for human health effects. Different approaches are proposed to derive effect-based trigger values (EBTs), including EBTs based on (1) relative ecotoxicity potency, (2) health-based threshold values for chronic exposure in humans and kinetics of reference chemicals, and (3) read-across from (drinking) water guideline values. Effects-based trigger values need to be chosen carefully in order to be sufficiently but not overly conservative to indicate potential health effects. Consensus on the crucial steps in the selection and interpretation of in vitro bioassay data will facilitate implementation and legal embedding in the context of water quality monitoring of such assays in EBM strategies. Integr Environ Assess Manag 2019;15:126-134. (c) 2018 The Authors. Integrated Environmental Assessment and Management published by Wiley Periodicals, Inc. on behalf of Society of Environmental Toxicology & Chemistry (SETAC)
机译:在化学风险评估和临床诊断的背景下开发了多种体外生物测定法,以测试对不同生物过程的影响。这种分析还可以在基于效果的(饮用水)水质监测(EBM)中进行化学分析。基于效果的监测可以洞悉与(未知)复杂,低水平的微污染物混合物接触相关的环境和人类健康风险,这符合最近在欧洲饮用水指令中引入的基于风险的方法。仍然存在一些挑战,特别是与生物测定的选择和解释有关的挑战。对于水质评估,致癌作用,对生殖和发育的不利影响,对异生物代谢的影响,激素系统的调节,DNA反应性和适应性应激反应被认为是最相关的毒理学终点。基于现有信息,已经开发了一种用于水质监测的体外生物测定的适用性和性能的评估程序,该程序可以通过实验评估的指南进行扩展。此外,还需要一种用于解释体外监测数据的方法,因为特定的体外生物测定与样品浓度结合的敏感性可能会导致化学物质(远)低于与人类健康影响相关的暴露浓度的响应。提出了不同的方法来得出基于效果的触发值(EBT),包括基于以下因素的EBT:(1)相对生态毒性效力,(2)基于人体健康的慢性暴露阈值和参考化学品的动力学,以及(3)阅读-超出(饮用)水指导值。需要谨慎选择基于效果的触发值,以便足够但又不过于保守以指示潜在的健康影响。关于选择和解释体外生物测定数据的关键步骤的共识将有利于在EBM策略中对此类测定的水质进行监测的情况下实施和法律嵌入。 Integr环境评估管理2019; 15:126-134。 (c)2018作者。 Wiley Periodicals,Inc.代表环境毒理化学协会(SETAC)出版的《综合环境评估与管理》

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