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Comparative toxicity evaluation of flower-shaped and spherical gold nanoparticles on human endothelial cells

机译:花形和球形金纳米颗粒对人内皮细胞的毒性比较评价

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In this paper, we propose a multi-parametric in vitro study of the cytotoxicity of gold nanoparticles (GNPs) on human endothelial cell (HUVEC). The cytotoxicity is evaluated by incubating cells with six different GNP types which have two different morphologies: spherical and flower-shaped, two sizes (similar to 15 and similar to 50 nm diameter) and two surface chemistries (as prepared form and PEGylated form). Our results showed that by increasing the concentration of GNPs the cell viability decreases with a toxic concentration threshold of 10 pM for spherical GNPs and of 1 pM for flower-shaped GNPs. Dark field images, flow cytometry and spreading test revealed that flower-shaped GNPs have more deleterious effects on the cell mechanisms than spherical GNPs. We demonstrated that the main parameter in the evaluation of the GNPs toxicity is the GNPs roughness and that this effect is independent on the surface chemistry. We assume that this behavior is highly related to the efficiency of the GNPs internalization within the cells and that this effect is enhanced due to the specific geometry of the flower-shaped GNPs.
机译:在本文中,我们提出了金纳米颗粒(GNP)对人内皮细胞(HUVEC)的细胞毒性的多参数体外研究。通过孵育具有六种不同GNP类型的细胞来评估其细胞毒性,这些GNP类型具有两种不同的形态:球形和花形,两种大小(类似于15纳米且类似于50 nm直径)和两种表面化学成分(如制备形式和PEG化形式)。我们的结果表明,通过增加GNP的浓度,细胞活力会降低,球形GNP的毒性浓度阈值为10 pM,而花形GNP的毒性浓度阈值为1 pM。暗场图像,流式细胞仪和铺展试验表明,花形GNP比球形GNP对细胞机制的危害更大。我们证明了GNPs毒性评估的主要参数是GNPs粗糙度,并且这种影响与表面化学性质无关。我们假设这种行为与细胞内GNP内在化的效率高度相关,并且由于花朵状GNP的特定几何形状,这种效果得到了增强。

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