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Principal Component and Causal Analysis of Structural and Acute in vitro Toxicity Data for Nanoparticles.

机译:纳米粒子结构和急性体外毒性数据的主成分和原因分析。

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摘要

Abstract Structure toxicity relationship analysis was conducted using principal component analysis (PCA) for a panel of nanoparticles that included dry powders of oxides of titanium, zinc, cerium and silicon, dry powders of silvers, suspensions of polystyrene latex beads, and dry particles of carbon black, nanotubes and fullerene, as well as diesel exhaust particles. Acute in vitro toxicity was assessed by different measures of cell viability, apoptosis and necrosis, haemolytic effects and the impact on cell morphology, while structural properties were characterised by particle size and size distribution, surface area, morphology, metal content, reactivity, free radical generation and zeta potential. Different acute toxicity measures were processed using PCA that classified the particles and identified four materials with an acute toxicity profile: zinc oxide, polystyrene latex amine, nanotubes and nickel oxide. PCA and contribution plot analysis then focused on identifying the structural properties that could determine the acute cytotoxicity of these four materials. It was found that metal content was an explanatory variable for acute toxicity associated with zinc oxide and nickel oxide, whilst high aspect ratio appeared the most important feature in nanotubes. Particle charge was considered as a determinant for high toxicity of polystyrene latex amine.
机译:摘要使用主成分分析(PCA)对一组纳米颗粒进行了结构毒性关系分析,这些纳米颗粒包括钛,锌,铈和硅的氧化物干粉,银的干粉,聚苯乙烯乳胶珠的悬浮液和碳的干粉。黑色,纳米管和富勒烯以及柴油机废气颗粒。通过细胞活力,细胞凋亡和坏死,溶血作用以及对细胞形态的影响的不同测量来评估急性体外毒性,而结构性质则通过粒径和粒径分布,表面积,形态,金属含量,反应性,自由基来表征生成和ζ电位。使用PCA对不同的急性毒性措施进行了处理,该PCA对颗粒进行了分类并确定了四种具有急性毒性特征的材料:氧化锌,聚苯乙烯乳胶胺,纳米管和氧化镍。然后,PCA和贡献图分析着重于确定可以确定这四种材料的急性细胞毒性的结构特性。发现金属含量是与氧化锌和氧化镍相关的急性毒性的解释变量,而高长径比似乎是纳米管中最重要的特征。颗粒电荷被认为是聚苯乙烯胶乳胺高毒性的决定因素。

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