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Framework to Evaluate Exposure Relevance and Data Needs for Risk Assessment of Nanomaterials using in Vitro Testing Strategies

机译:使用体外测试策略评估纳米材料风险评估的暴露相关性和数据需求的框架

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摘要

This article presents a multistage framework for evaluating the strength of evidence of nanomaterial (NM) exposure characterization data to optimize the utility of in vitro testing strategies for human health risk assessment. This framework is intended to aid risk assessors in evaluating the relevance of data from in vitro tests and to optimize the development of new in vitro testing strategies. The initial stage frames the exposure scenarios of interest in advance of testing to incorporate aspects such as release points, route of exposure, biological and environmental transformations, dose metrics, and biological targets in subsequent stages. The second stage considers characterization in the context of a realistic exposure and the third stage involves designing a testing strategy based on expected exposure conditions. For the fourth and final stage, we propose a matrix approach to evaluate the strength of evidence obtained in the first three stages as a basis for determining the best combination of test conditions and analytical methods available to characterize and measure exposure based on the NM type. This approach can also be used to evaluate existing data for their relevance to the expected exposure scenario and to further develop and optimize in vitro testing strategies. Implementation of the proposed strategy will generate meaningful information on NM properties and their interaction with biological systems, based on realistic exposure scenarios, which will be cost effective and can be applied for assessing risk and making intelligent regulatory decisions regarding the use and disposal of NMs.
机译:本文提出了一个评估纳米材料(NM)暴露特征数据证据强度的多阶段框架,以优化用于人体健康风险评估的体外测试策略的实用性。该框架旨在帮助风险评估师评估体外测试数据的相关性,并优化新的体外测试策略的开发。初始阶段会在测试之前确定感兴趣的暴露场景,以在后续阶段中纳入诸如释放点,暴露途径,生物和环境转化,剂量指标以及生物学目标等方面。第二阶段考虑到实际暴露情况下的表征,第三阶段涉及根据预期暴露条件设计测试策略。对于第四个也是最后一个阶段,我们提出了一种矩阵方法来评估在前三个阶段中获得的证据的强度,以此为基础确定测试条件和可用于表征和测量NM型暴露的分析方法的最佳组合。这种方法还可以用于评估现有数据与预期暴露场景的相关性,并进一步开发和优化体外测试策略。拟议战略的实施将根据现实的暴露情景,产生有关NM特性及其与生物系统相互作用的有意义的信息,这将具有成本效益,并可用于评估风险以及就NM的使用和处置做出明智的监管决定。

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