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工程纳米材料安全性评估替代试验策略的实施。

Implementation of alternative test strategies for the safety assessment of engineered nanomaterials.

机构信息

Division of NanoMedicine, Department of Medicine, David Geffen School of Medicine, University of California, Los Angeles, CA, USA; California NanoSystems Institute, University of California, Los Angeles (UCLA), Los Angeles, CA, USA; Center for Environmental Implications of Nanotechnology, University of California, Los Angeles, CA, USA; UCLA Center for Nano Biology and Predictive Toxicology, Los Angeles, CA, USA.

出版信息

J Intern Med. 2013 Dec;274(6):561-77. doi: 10.1111/joim.12109. Epub 2013 Jul 24.

Abstract

Nanotechnology introduces a new field that requires novel approaches and methods for hazard and risk assessment. For an appropriate scientific platform for safety assessment, nanoscale properties and functions of engineered nanomaterials (ENMs), including how the physicochemical properties of the materials relate to mechanisms of injury at the nano-bio interface, must be considered. Moreover, this rapidly advancing new field requires novel test strategies that allow multiple toxicants to be screened in robust, mechanism-based assays in which the bulk of the investigation can be carried out at the cellular and biomolecular level whilst maintaining limited animal use and is based on the contribution of toxicological pathways to the pathophysiology of disease. First, a predictive toxicological approach for the safety assessment of ENMs will be discussed against the background of a '21st-century vision' for using alternative test strategies (ATSs) to perform toxicological assessment of large numbers of untested chemicals, thereby reducing a backlog that could otherwise become a problem for nanotechnology. An ATS is defined here as an alternative to animal experiments or refinement/reduction alternative to traditional animal testing. Secondly, the approach of selecting pathways of toxicity to screen for the pulmonary hazard potential of carbon nanotubes and metal oxides will be discussed, as well as how to use these pathways to perform high-content or high-throughput testing and how the data can be used for hazard ranking, risk assessment, regulatory decision-making and 'safer-by-design' strategies. Finally, the utility and disadvantages of this predictive toxicological approach to ENM safety assessment, and how it can assist the 21st-century vision, will be addressed.

摘要

纳米技术带来了一个新的领域,需要新的方法来进行危害和风险评估。为了建立适当的安全评估科学平台,必须考虑工程纳米材料(ENMs)的纳米级特性和功能,包括材料的物理化学性质与纳米-生物界面损伤机制的关系。此外,这个快速发展的新领域需要新的测试策略,允许在稳健的、基于机制的测定中筛选多种毒性物质,在这些测定中,大部分调查可以在细胞和生物分子水平上进行,同时保持有限的动物使用,并基于毒性途径对疾病病理生理学的贡献。首先,将在“21 世纪愿景”的背景下讨论用于纳米材料安全评估的预测性毒理学方法,该愿景旨在利用替代测试策略(ATS)对大量未经测试的化学品进行毒理学评估,从而减少积压,否则这可能成为纳米技术的一个问题。这里将 ATS 定义为动物实验的替代方法或对传统动物测试的改进/减少替代方法。其次,将讨论选择毒性途径来筛选碳纳米管和金属氧化物的肺部危害潜力的方法,以及如何使用这些途径进行高通量或高内涵测试,以及如何使用这些数据进行危害分级、风险评估、监管决策和“设计安全”策略。最后,将讨论这种预测性毒理学方法对 ENM 安全评估的实用性和缺点,以及它如何帮助实现 21 世纪的愿景。

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