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Considerations of Environmentally Relevant Test Conditions for Improved Evaluation of Ecological Hazards of Engineered Nanomaterials

机译:考虑环境相关测试条件以改进对工程纳米材料生态危害的评估

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摘要

Engineered nanomaterials (ENMs) are increasingly entering the environment with uncertain consequences including potential ecological effects. Various research communities view differently whether ecotoxicological testing of ENMs should be conducted using environmentally relevant concentrations—where observing outcomes is difficult—versus higher ENM doses, where responses are observable. What exposure conditions are typically used in assessing ENM hazards to populations? What conditions are used to test ecosystem-scale hazards? What is known regarding actual ENMs in the environment, via measurements or modeling simulations? How should exposure conditions, ENM transformation, dose, and body burden be used in interpreting biological and computational findings for assessing risks? These questions were addressed in the context of this critical review. As a result, three main recommendations emerged. First, researchers should improve ecotoxicology of ENMs by choosing test endpoints, duration, and study conditions—including ENM test concentrations—that align with realistic exposure scenarios. Second, testing should proceed via tiers with iterative feedback that informs experiments at other levels of biological organization. Finally, environmental realism in ENM hazard assessments should involve greater coordination among ENM quantitative analysts, exposure modelers, and ecotoxicologists, across government, industry, and academia.
机译:工程纳米材料(ENM)越来越多地进入环境,其后果不确定,包括潜在的生态影响。各个研究界对是否应使用环境相关浓度的ENM进行生态毒理学测试有不同的看法-在难以观察到结果的环境中-与可以观察到反应的较高ENM剂量相比。在评估ENM对人群的危害时通常使用什么暴露条件?哪些条件用于测试生态系统规模的危害?通过测量或建模模拟,有关环境中实际ENM的已知信息是什么?在解释生物学和计算结果以评估风险时,应如何使用暴露条件,ENM转化,剂量和身体负担?这些问题在本次严格审查中得到了解决。结果,提出了三个主要建议。首先,研究人员应通过选择与实际暴露场景相符的测试终点,持续时间和研究条件(包括ENM测试浓度)来改善ENM的生态毒理学。其次,测试应通过具有迭代反馈的层级进行,这些反馈将告知其他层次的生物组织的实验。最后,ENM危害评估中的环境现实主义应包括政府,行业和学术界之间的ENM定量分析人员,接触模型师和生态毒理学家之间的更大协调。

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