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首页> 外文期刊>Nanoscale >From basic physics to mechanisms of toxicity: the 'liquid drop' approach applied to develop predictive classification models for toxicity of metal oxide nanoparticles
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From basic physics to mechanisms of toxicity: the 'liquid drop' approach applied to develop predictive classification models for toxicity of metal oxide nanoparticles

机译:从基本物理机制的毒性:“液滴”方法应用于开发毒性的预测分类模型金属氧化物纳米颗粒

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摘要

Many metal oxide nanoparticles are able to cause persistent stress to live organisms, including humans, when discharged to the environment. To understand the mechanism of metal oxide nanoparticles' toxicity and reduce the number of experiments, the development of predictive toxicity models is important. In this study, performed on a series of nanoparticles, the comparative quantitative-structure activity relationship (nano-QSAR) analyses of their toxicity towards E. coli and HaCaT cells were established. A new approach for representation of nanoparticles' structure is presented. For description of the supra-molecular structure of nanoparticles the "liquid drop" model was applied. It is expected that a novel, proposed approach could be of general use for predictions related to nanomaterials. In addition, in our study fragmental simplex descriptors and several ligand-metal binding characteristics were calculated. The developed nano-QSAR models were validated and reliably predict the toxicity of all studied metal oxide nanoparticles. Based on the comparative analysis of contributed properties in both models the LDM-based descriptors were revealed to have an almost similar level of contribution to toxicity in both cases, while other parameters (van der Waals interactions, electronegativity and metal-ligand binding characteristics) have unequal contribution levels. In addition, the models developed here suggest different mechanisms of nanotoxicity for these two types of cells.
机译:许多金属氧化物纳米粒子能够引起持续的压力活的生物体,包括人类,当排放到环境中。金属氧化物的理解机制纳米颗粒的毒性和减少的数量实验,预测的发展毒性模型是很重要的。上执行一系列的纳米颗粒定量结构活性比较(nano-QSAR)分析他们之间的关系对大肠杆菌和HaCaT细胞毒性建立。纳米粒子的结构。描述的超分子结构纳米粒子的“液滴”模型应用。方法可以普遍使用的预测与纳米材料有关。研究碎屑单工描述符和几个ligand-metal约束力的特点是计算。验证和可靠地预测的毒性研究了金属氧化物纳米颗粒。贡献的比较分析在这两种模型LDM-based属性描述符被透露几乎类似的毒性水平的贡献情况下,当其他参数(范德瓦尔斯交互,电负性和metal-ligand绑定特性)不平等贡献水平。这里开发不同机制的建议nanotoxicity对于这两种类型的细胞。

著录项

  • 来源
    《Nanoscale》 |2014年第22期|13986-13993|共8页
  • 作者单位

    I. I. Mechnikov Odessa National University, Department of Chemistry, Dvoryanskaya str., 2, 65082 Odessa, Ukraine;

    Laboratory of Environmental Chemometrics, Faculty of Chemistry, University of Gdansk, Wita Stwosza 64, 80-308 Gdansk, Poland;

    Interdisciplinary Center for Nanotoxicity, Department of Chemistry and Biochemistry, Jackson State University, 1400 J. R Lynch Street, P. O. Box 17910, Jackson, MS 39217, USA;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    Escherichia coli; metal oxides; NanoparticlesOrganismToxicitycell type;

    机译:氧化物;NanoparticlesOrganismToxicitycell类型;
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