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Summary and Analysis of the Currently Existing Literature Data on Metal-based Nanoparticles Published for Selected Aquatic Organisms: Applicability for Toxicity Prediction by (Q)SARs

机译:针对选择的水生生物发布的有关金属基纳米粒子的现有文献数据的摘要和分析:(Q)SAR的毒性预测适用性

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This review establishes an inventory of existing toxicity data on nanoparticles (NPs)with the purpose of developing (Quantitative) Structure-Activity Relationships for NPs ( nano-[Q] SARs), and also of maximising the use of scientific sources for NP risk assessment. From a data search carried out on 27 February 2014, a total of 910 publications were retrieved from the Web of Science (TM) Core Collection, and a database comprising 886 records of toxicity endpoints, based on these publications, was built. The test organisms mainly comprised bacteria, algae, yeast, protozoa, nematoda, crustacea and fish. The NPs consisted mostly of metals, metal oxides, nanocomposites and quantum dots. The data were analysed further, in order to: a) categorise each toxicity endpoint and the biological effects triggered by the NPs; b) survey the characterisation of the NPs used; and c) assess whether the data were suitable for nano-(Q) SAR development. Despite the efforts of numerous scientific programmes on nanomaterial safety and design, our study concluded that lack of data consistency prevents the use of experimental data in developing and validating nano-(Q) SARs. Finally, an outlook on the future of nano-(Q) SAR development is provided.
机译:这篇综述建立了关于纳米颗粒(NPs)的现有毒性数据的清单,目的是开发NPs(nano- [Q] SARs)的(定量)结构-活性关系,并最大程度地利用科学资源进行NP风险评估。从2014年2月27日进行的数据搜索中,从Web of Science(TM)核心收藏中检索了总共910种出版物,并基于这些出版物建立了包含886种毒性终点记录的数据库。被测生物主要包括细菌,藻类,酵母,原生动物,线虫,甲壳纲和鱼类。 NP主要由金属,金属氧化物,纳米复合物和量子点组成。为了进一步分析数据,以便:a)对每个毒性终点和由NPs触发的生物学效应进行分类; b)调查所用NP的特性; c)评估数据是否适合纳米(Q)SAR开发。尽管在纳米材料安全性和设计方面进行了许多科学计划,但我们的研究得出的结论是,缺乏数据一致性会阻止在开发和验证纳米(Q)SAR时使用实验数据。最后,提供了对纳米(Q)SAR发展前景的展望。

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