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Physical-chemical characterization of tungsten carbide nanoparticles as a basis for toxicological investigations

机译:碳化钨纳米颗粒的理化特性作为毒理学研究的基础

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摘要

One task in risk assessment of engineered nanoparticles is toxicological studies. A suitable interpretation of these investigations demands a comprehensive physical-chemical characterization. Here, we present an approach to gain well-dispersed nanoparticles in physiological media. Therefore, a step-by-step procedure is demonstrated on two different tungsten carbide nanopowders which can be transferred to other powders. The procedure includes a comprehensive powder characterization, followed by a preparation of a non-physiologic, electrostatically stable nanoparticle suspension and finally closes with investigations of the particles' behavior in different physiological media. Our study showed that the particles agglomerate in protein-free media. In this context, dependencies of mass- and surface-based nanoparticle concentrations as well as of different physiological media were analyzed. In the presence of bovine serum albumin (BSA) or serum, the agglomeration process is decelerated or, at the appropriate protein amount, prevented.
机译:工程纳米颗粒的风险评估中的一项任务是毒理学研究。对这些研究的适当解释需要全面的物理化学表征。在这里,我们提出了一种在生理介质中获得分散良好的纳米颗粒的方法。因此,在两种可以转移到其他粉末上的不同碳化钨纳米粉上,分步进行了演示。该程序包括全面的粉末表征,然后制备非生理性的,静电稳定的纳米颗粒悬浮液,最后以研究不同生理介质中的颗粒行为作为结尾。我们的研究表明,这些颗粒在无蛋白质的介质中会聚结。在这种情况下,分析了基于质量和基于表面的纳米颗粒浓度以及不同生理介质的依赖性。在牛血清白蛋白(BSA)或血清的存在下,团聚过程被减速或以适当的蛋白质量被阻止。

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