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Challenge to assess the toxic contribution of metal cation released from nanomaterials for nanotoxicology - the case of ZnO nanoparticles

机译:挑战的有毒的贡献进行评估金属离子释放的纳米材料纳米毒理学,氧化锌纳米颗粒的情况下

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摘要

The identification of physicochemical factors that govern toxic effects of nanomaterials (NMs) is important for the safe design and synthesis of NMs. The release of metal cations from NMs in cell culture medium and the role of the metal cations in cytotoxicity are still under dispute. Here, we report that removal of NMs such as ZnO nanoparticles (NPs) by centrifugation, the procedure commonly used for the estimation of released ion concentration in nanotoxicology, was incomplete even at a relative centrifugal force of 150 000 × g. In this sense, the Zn concentration in supernatant measured by inductively coupled plasma-mass spectrometry cannot be regarded as the concentration of free Zn~(2+) ions which were released from ZnO NPs in cell culture medium. This suggests the urgent need to develop relevant analytical techniques for nanotoxicology. The toxic contribution of released Zn~(2+) ions to the A549 cell lines was estimated to be only about 10%. We conclude that the cytotoxicity associated with ZnO NPs is not a function of the Zn concentration, suggesting that other factors play an important role in the toxic effect of ZnO NPs.
机译:理化因素的识别控制纳米材料的毒性作用(NMs)重要的安全设计和合成NMs。细胞培养基和金属的作用阳离子在细胞毒性仍在争论中。在这里,我们报告删除NMs如氧化锌离心分离的纳米颗粒(NPs)过程常用的估计离子浓度在纳米毒理学,发布不完整的甚至在一个相对的离心力150 000×g。从这个意义上讲,锌在上层清液浓度测量电感耦合等离子体质谱法不能被视为自由的浓度锌~(2 +)离子从氧化锌NPs在释放细胞培养基。需要开发相关的分析技术纳米毒理学。释放锌~(2 +)离子对A549细胞株估计只有10%。与氧化锌NPs不是相关的细胞毒性锌浓度的函数,说明有毒的其他因素发挥着重要的作用氧化锌NPs的效果。

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