首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Key physicochemical properties of nanomaterials in view of their toxicity: an exploratory systematic investigation for the example of carbon-based nanomaterial
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Key physicochemical properties of nanomaterials in view of their toxicity: an exploratory systematic investigation for the example of carbon-based nanomaterial

机译:纳米材料的关键物理化学特性鉴于毒性:碳基纳米材料实例的探索系统研究

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Currently, a noncomprehensive understanding of the physicochemical properties of carbon-based nanomaterial (CBNs), which may affect toxic effects, is still observable. In this study, an exploratory systematic investigation into the key physicochemical properties of multiwall carbon nanotube (MWCNT), single-wall carbon nanotube (SWCNT), and C-60-fullerene on their ecotoxicity has been undertaken. We undertook an extensive survey of the literature pertaining to the ecotoxicity of organism representative of the trophic level of algae, crustaceans, and fish. Based on this, a set of data reporting both the physicochemical properties of carbon-based nanomaterial and the observed toxic effect has been established. The relationship between physicochemical properties and observed toxic effect was investigated based on various statistical approaches. Specifically, analysis of variance by one-way ANOVA was used to assess the effect of categorical properties (use of a dispersant or treatments in the test medium, type of carbon-based nanomaterial, i.e., SWCNT, MWCNT, C-60-fullerene, functionalization), while multiple regression analysis was used to assess the effect of quantitative properties (i.e., diameter length of nanotubes, secondary size) on the toxicity values. The here described investigations revealed significant relationships among the physicochemical properties and observed toxic effects. The research was mainly affected by the low availability of data and also by the low variability of the studies collected. Overall, our results demonstrate that the here proposed and applied approach could have a major role in identifying the physicochemical properties of relevance for the toxicity of nanomaterial. However, the future success of the approach would require that the ENMs and the experimental conditions used in the toxicity studies are fully characterized.
机译:目前,仍然可观察到对碳基纳米材料(CBNS)的物理化学性质的不符合性的理解仍然可观察到。在本研究中,已经进行了探索性系统调查,进入多壁碳纳米管(MWCNT),单壁碳纳米管(SWCNT)和C-60-富勒斯对其生态毒性的关键物理化学性质的探索性系统研究。我们对患有藻类,甲壳类动物营养水平的生物体的生态毒性有关的文献进行了广泛的调查。基于此,已经建立了一组数据报告碳基纳米材料的物理化学性质和观察到的毒效应。基于各种统计方法研究了物理化学性质与观察到毒害的关系。具体地,通过单向ANOVA的差异分析来评估分类性质的效果(在试验介质中使用分散剂或处理,碳基纳米材料的类型,即SWCNT,MWCNT,C-60-富勒烯,官能化),而多元回归分析用于评估毒性值对毒性值的定量性质(即直径长度)的效果。这里描述的研究显示了物理化学性质和观察到的毒性作用的显着关系。该研究主要受数据可用性的低可用性以及所收集的研究的低可变性。总体而言,我们的结果表明,这里提出和应用的方法可具有重要作用,在鉴定纳米材料毒性的相关性的物理化学性质。然而,该方法的未来成功将要求益智和毒性研究中使用的实验条件完全表征。

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