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A Dose Metrics Perspective on the Association of Gold Nanomaterials with Algal Cellsy

机译:金纳米材料与藻类细胞金纳米材料的关联剂的透视图

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A single-cell inductively coupled plasma mass spectrometry technique was used to explore the influence of particle properties on the association of nanomaterials (NMs) with algal cells. We investigated the effect of particle size, shape, and surface chemistry [citrate and natural organic matter (NOM) coating] on the association of gold (Au) NMs with algal cells using particle mass, particle number, surface area (SA), and volume-specific surface area (VSSA) as dose metrics. Particle number was found to be a better dose metric than particle mass, SA, and VSSA in view of the strong correlation obtained between the number of associated Au NMs with cells and the number of Au NMs in the exposure medium. When particle number was used as the dose metric, there was no selectivity of Au NM cellular association irrespective of particle size and shape, and the cellular association was proportional to the effective number of particles to which the cells were exposed. The surface chemistry of the Au NMs, however, decreased the level of cellular association of some NMs (60 nm spheres). Particle number is the main element used for the classification of NMs according to the recommended definition for NM by the European Commission. The key finding of our study supports the implementation of this definition for safety purposes.
机译:单电池电感耦合等离子体质谱技术用于探讨颗粒性质对藻类细胞纳米材料(NMS)关联的影响。我们研究了使用颗粒质量,颗粒数,表面积(SA)和体积特异性表面积(VSSA)作为剂量指标。粒子数是比颗粒质量,SA和VSSA更好的剂量度量,考虑到在具有细胞的相关AU NMS的数量和曝光介质中的AU NM的数量之间获得的强相关性。当使用粒子数量作为剂量度量时,无论粒度和形状如何,Au nm细胞关联都没有选择性,并且细胞关联与细胞暴露的有效数量的颗粒成比例。然而,Au NMS的表面化学降低了一些NMS(60nm球体)的细胞缔合的水平。粒子数是根据欧盟委员会的推荐定义用于NMS分类的主元件。我们的研究的主要发现支持执行此定义以确保安全目的。

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