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多利益相关方视角下的纳米材料安全评估替代测试策略的应用。

A multi-stakeholder perspective on the use of alternative test strategies for nanomaterial safety assessment.

机构信息

Department of Medicine, Division of NanoMedicine, University of California Center for Environmental Implications of Nanotechnology, University of California, Los Angeles, California 90095, United States.

出版信息

ACS Nano. 2013 Aug 27;7(8):6422-33. doi: 10.1021/nn4037927. Epub 2013 Aug 7.

Abstract

There has been a conceptual shift in toxicological studies from describing what happens to explaining how the adverse outcome occurs, thereby enabling a deeper and improved understanding of how biomolecular and mechanistic profiling can inform hazard identification and improve risk assessment. Compared to traditional toxicology methods, which have a heavy reliance on animals, new approaches to generate toxicological data are becoming available for the safety assessment of chemicals, including high-throughput and high-content screening (HTS, HCS). With the emergence of nanotechnology, the exponential increase in the total number of engineered nanomaterials (ENMs) in research, development, and commercialization requires a robust scientific approach to screen ENM safety in humans and the environment rapidly and efficiently. Spurred by the developments in chemical testing, a promising new toxicological paradigm for ENMs is to use alternative test strategies (ATS), which reduce reliance on animal testing through the use of in vitro and in silico methods such as HTS, HCS, and computational modeling. Furthermore, this allows for the comparative analysis of large numbers of ENMs simultaneously and for hazard assessment at various stages of the product development process and overall life cycle. Using carbon nanotubes as a case study, a workshop bringing together national and international leaders from government, industry, and academia was convened at the University of California, Los Angeles, to discuss the utility of ATS for decision-making analyses of ENMs. After lively discussions, a short list of generally shared viewpoints on this topic was generated, including a general view that ATS approaches for ENMs can significantly benefit chemical safety analysis.

摘要

毒理学研究已经从描述发生的事情转变为解释不良后果发生的方式,从而使人们能够更深入地了解生物分子和机制分析如何为危害识别提供信息,并改善风险评估。与传统毒理学方法相比,这些方法严重依赖于动物,而新的方法可以生成毒理学数据,用于化学品的安全性评估,包括高通量和高内涵筛选(HTS、HCS)。随着纳米技术的出现,研究、开发和商业化中工程纳米材料(ENMs)的总数呈指数级增长,这需要一种强大的科学方法来快速有效地筛选人类和环境中的 ENM 安全性。受到化学测试发展的推动,ENMs 的一种很有前途的新毒理学范例是使用替代测试策略(ATS),通过使用体外和计算方法,如 HTS、HCS 和计算建模,减少对动物测试的依赖。此外,这允许同时对大量的 ENMs 进行比较分析,并在产品开发过程和整个生命周期的各个阶段进行危害评估。以碳纳米管为例,加州大学洛杉矶分校召集了来自政府、工业和学术界的国内外领导人举行了一次研讨会,讨论 ATS 对 ENM 决策分析的实用性。经过热烈的讨论,针对这个主题生成了一份通常观点的简短清单,其中包括一个普遍观点,即用于 ENM 的 ATS 方法可以大大有益于化学安全分析。

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