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Critical experimental parameters related to the cytotoxicity of zinc oxide nanoparticles

机译:与氧化锌纳米颗粒的细胞毒性有关的关键实验参数

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摘要

The increasing use of zinc oxide nanoparticles (ZnO-NPs) has raised concerns about their potential hazards to human and environmental health. In this study, the characterization and cytotoxicity of two ZnO-NPs products (Z-COTE and Z-COTE HP1) were investigated. The zinc content of Z-COTE and Z-COTE HP1 was 82.5 ± 7.3 and 80.1 ± 3.5 %, respectively. Both ZnO–NP samples contained sub-cytotoxic levels of iron and copper, and silicon was detected from the surface coating of Z-COTE HP1. All samples were highly agglomerated, and the primary particles appeared as variable polyhedral structures. There was no significant difference in size distribution or average diameter of Z-COTE (53 ± 23 nm) and Z-COTE HP1 (54 ± 26 nm). A dose-dependent cytotoxicity was observed 24 h after exposure to ZnO-NPs, and monocytes were more sensitive than lung epithelial cells or lymphoblasts in both human and mouse cells. There was a significant difference in cytotoxicity between nano- and fine-forms, but only at the threshold cytotoxic dose with cellular metabolism assays. Compared to uncoated ZnO-NPs, the surface coating with triethoxycaprylylsilane marginally attenuated cellular oxidative stress and protected cellular metabolic activity. These results demonstrate the importance of model cell type, dose selection, and cytotoxicity assessment methodology to accurately evaluate the potential toxicity of various nanoparticles in vitro.
机译:氧化锌纳米颗粒(ZnO-NPs)的日益使用引起了人们对其潜在危害人类和环境健康的担忧。在这项研究中,研究了两种ZnO-NPs产品(Z-COTE和Z-COTE HP1)的表征和细胞毒性。 Z-COTE和Z-COTE HP1的锌含量分别为82.5±7.3和80.1±3.5%。两种ZnO-NP样品均含有亚铁水平的铁和铜,并且从Z-COTE HP1的表面涂层中检测到了硅。所有样品高度聚集,并且初级颗粒表现为可变的多面体结构。 Z-COTE(53±23 nm)和Z-COTE HP1(54±26 nm)的尺寸分布或平均直径无明显差异。暴露于ZnO-NPs后24小时观察到剂量依赖性的细胞毒性,在人和小鼠细胞中,单核细胞比肺上皮细胞或淋巴母细胞更敏感。纳米形式和精细形式之间的细胞毒性存在显着差异,但仅在细胞代谢试验的细胞毒性阈值范围内。与未涂层的ZnO-NPs相比,三乙氧基辛基硅烷的表面涂层可略微减弱细胞的氧化应激并保护细胞的代谢活性。这些结果证明了模型细胞类型,剂量选择和细胞毒性评估方法学对准确评估各种纳米粒子体外潜在毒性的重要性。

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