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Systems toxicology approaches for understanding the joint effects of environmental chemical mixtures

机译:用于了解环境化学混合物共同作用的系统毒理学方法

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摘要

Environmental mixtures of chemicals constitute a prevalent issue in ecotoxicology and the development of new methods to reduce the uncertainties associated with their ecological risk assessment is a critical research need. Historically, a number of models have been explored to predict the potential combined effects of chemicals on species. These models, especially concentration addition and the independent action, have been applied to a number of mixtures. While often providing a good prediction of joint effect, there are cases where these models can have limitations: notably in cases where there are interactions for which they fail to adequately predict joint effects. To support the better mechanistic understanding of interactions in mixture toxicology a framework to support experimental studies to investigate the basis of observed interactions is proposed. The conceptual framework is derived from the extension of a three stage scheme which has previously been applied to understand chemical bioavailability. The framework considers that interactions in mixtures result from processes related to 1) the speciation, binding and transport of chemicals in the exposure medium (external exposure); 2) the adsorption, distribution, metabolism and excretion of chemicals within the organisms (toxicokinetics); 3) associations governing the binding and toxicity of the chemical(s) at the target site (toxicodynamics). The current state of the art in (eco)toxicology in relation to investigation of the mechanisms of interactions between chemicals is discussed with particular emphasis towards the multi-disciplinary tools and techniques within environmental chemistry; toxicology; biochemistry and systems biology that can be used to address such effects.
机译:化学品的环境混合物是生态毒理学中的一个普遍问题,开发新的方法以减少与其生态风险评估相关的不确定性是一项至关重要的研究需求。历史上,已经探索了许多模型来预测化学物质对物种的潜在综合影响。这些模型,特别是浓度添加和独立作用,已应用于多种混合物。尽管通常可以很好地预测关节效果,但是在某些情况下,这些模型可能会有局限性:特别是在存在无法充分预测关节效果的相互作用的情况下。为了支持对混合物毒理学中相互作用的更好的机械理解,提出了一个支持实验研究以研究观察到的相互作用基础的框架。该概念框架源自三阶段方案的扩展,该方案先前已应用于理解化学生物利用度。该框架认为混合物中的相互作用是由于与以下过程有关:1)暴露介质中化学物质的形成,结合和运输(外部暴露); 2)生物体内化学物质的吸附,分布,代谢和排泄(毒物动力学); 3)控制化学物质在目标部位的结合和毒性的关联(毒理动力学)。讨论了(生态)毒理学与化学物质之间相互作用机理研究有关的最新技术,并特别强调了环境化学中的多学科工具和技术。毒理学;生物化学和系统生物学可用于解决此类影响。

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  • 来源
    《The Science of the Total Environment》 |2010年第18期|P.3725-3734|共10页
  • 作者单位

    Centre for Ecology and Hydrology, Maclean Building, Benson Lane, Crowmarsh Gifford, Wallingford, Oxon, OX10 8BB, UK;

    rnThe Hopkins Building, Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1QW, UK School of Engineering and Computing Sciences, University of Durham, South Road, Durham, DH1 3LE, UK;

    rnUnit on Contaminants in the Food Chain, European Food Safety Authority, Largo N. Palli 5/A 43100 Parma, Italy Institute of Human Nutrition, School of Medicine, Biomedical Sciences Building, Bassett Crescent East, Southampton SO16 7PX, UK;

    rnCentre for Ecology and Hydrology, Maclean Building, Benson Lane, Crowmarsh Gifford, Wallingford, Oxon, OX10 8BB, UK;

    rnKing's College London, Department of Biochemistry, Pharmaceutical Science Division, 150 Stamford Street, London SE1 9NH, UK;

    rnKing's College London, Department of Biochemistry, Pharmaceutical Science Division, 150 Stamford Street, London SE1 9NH, UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mixture toxicity; interaction; external exposure; toxicokinetics; toxicodynamics; omics;

    机译:混合物毒性;相互作用;外部暴露;毒物动力学毒性动力学组学;

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