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THE ROLE OF HIGH-THROUGHPUT SCREENING IN ECOTOXICOLOGY AND ENGINEERED NANOMATERIALS

机译:高通量筛选在生态毒理学和工程化纳米材料中的作用

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The field of environmental toxicology developed as a result of growing concerns about anthropogenic influences on the environment and how to ameliorate ecological impact. Many governmental bodies are beginning to emphasize prevention rather than mitigation when addressing novel products, leading to more of a focus on identifying potential toxicity prior to release. With the exponential advances in their development and sale, novel metamaterials and biotechnology are set to dramatically outpace the capabilities of current testing strategies. To address the need for a fast, cost-effective means of testing chemicals, high-throughput screening (HTS) is currently being used in toxicology and being adapted to ecotoxicology in projects such as ToxCast and Tox21. Despite the growth of research using HTS platforms, its role in ecotoxicology is still uncertain, particularly in how it should be applied in regulation. The aim of the present review is to discuss common test strategies used in designing HTS platforms, the current potential applications for ecotoxicological research, its role in regulatory policies, and its ability to address growing concerns such as engineered nanomaterials. (C) 2017 SETAC
机译:人们越来越关注人为因素对环境的影响以及如何减轻生态影响,因此发展了环境毒理学领域。在处理新产品时,许多政府机构开始强调预防而不是缓解,导致更多地侧重于在释放前确定潜在的毒性。随着其开发和销售的指数级进步,新型超材料和生物技术必将大大超越当前测试策略的能力。为了满足对快速,经济高效的化学测试方法的需求,目前在毒理学中使用高通量筛选(HTS),并在ToxCast和Tox21等项目中将其应用于生态毒理学。尽管使用HTS平台的研究在不断增长,但其在生态毒理学中的作用仍不确定,尤其是在监管中应如何应用。本综述的目的是讨论设计HTS平台时使用的常见测试策略,生态毒理学研究的当前潜在应用,其在监管政策中的作用以及解决诸如工程纳米材料等日益增长的关注的能力。 (C)2017年SETAC

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