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(Q)SAR Modelling of Nanomaterial Toxicity - A Critical Review

机译:(Q)纳米材料毒性的saR建模 - 一个评论性的评论

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摘要

There is an increasing recognition that nanomaterials pose a risk to human health, and that the novel engineered nanomaterials (ENMs) in the nanotechnology industry and their increasing industrial usage poses the most immediate problem for hazard assessment, as many of them remain untested. The large number of materials and their variants (different sizes and coatings for instance) that require testing and ethical pressure towards non-animal testing means that expensive animal bioassay is precluded, and the use of (quantitative) structure activity relationships ((Q)SAR) models as an alternative source of hazard information should be explored. (Q)SAR modelling can be applied to fill the critical knowledge gaps by making the best use of existing data, prioritize physicochemical parameters driving toxicity, and provide practical solutions to the risk assessment problems caused by the diversity of ENMs. This paper covers the core components required for successful application of (Q)SAR technologies to ENMs toxicity prediction, and summarizes the published nano-(Q)SAR studies and outlines the challenges ahead for nano-(Q)SAR modelling. It provides a critical review of (1) the present status of the availability of ENMs characterization/toxicity data, (2) the characterization of nanostructures that meets the need of (Q)SAR analysis, (3) the summary of published nano-(Q)SAR studies and their limitations, (4) the in silico tools for (Q)SAR screening of nanotoxicity and (5) the prospective directions for the development of nano-(Q)SAR models.
机译:人们越来越认识到,纳米材料对人体健康构成威胁,并且纳米技术行业中的新型工程纳米材料(ENM)及其日益增长的工业用途构成了危害评估中最紧迫的问题,因为其中许多未经测试。需要测试的材料及其变体种类繁多(例如,不同的尺寸和涂层),以及对非动物测试的道德压力,这意味着昂贵的动物生物测定被排除在外,并且不使用(定量)结构活性关系((Q)SAR )应探索作为危害信息替代来源的模型。 (Q)SAR建模可以通过充分利用现有数据来填补关键的知识空白,确定驱动毒性的理化参数的优先级,并为由ENM多样性引起的风险评估问题提供实用的解决方案。本文介绍了成功将(Q)SAR技术应用于ENM毒性预测所需的核心组件,并总结了已发表的nano-(Q)SAR研究,并概述了纳米(Q)SAR建模面临的挑战。它对(1)ENM表征/毒性数据的可用性的现状,(2)满足(Q)SAR分析需求的纳米结构的表征,(3)已发表的纳米-( Q)SAR研究及其局限性,(4)用于(Q)SAR筛查纳米毒性的计算机工具,以及(5)纳米(Q)SAR模型开发的预期方向。

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