Department of Biochemistry and Biophysics, Institute of Biology, Pedagogical University of Cracow, Kraków, Poland.
J Appl Toxicol. 2021 Mar;41(3):458-469. doi: 10.1002/jat.4057. Epub 2020 Oct 25.
The development of nanotechnology has led to the increased production of zinc oxide nanoparticles (ZnO-NPs) and their application in a wide variety of everyday products. It creates the need for a full assessment of their safety for humans. The aim of the study was to assess the toxic effects of ZnO-NPs on model human cells of the immune system: U-937, HL-60, HUT-78, and COLO-720L. Particular attention was paid to the direct interaction of the nanoparticles with membrane lipids and the role of zinc ions in the mechanism of their toxicity. Cell viability, lipid peroxidation, cell membrane integrity, and the amount of zinc ions released from nanoparticles were tested. Disruption in cell metabolism was noted for ZnO-NPs concentrations from 6.25 mg/L. Contact with ZnO-NPs caused lipid peroxidation of all cells and correlated with membrane disruption of HL-60, HUT-78, and COLO-720L cells. Model monolayers (Langmuir technique) were used to assess the interaction of the nanoparticles with the studied lipids. Physicochemical parameters, such as the area per molecule at maximal layer compression, the pressure at which the monolayer collapses, and the static compression modulus, were calculated. The models of the HL-60 and U-937 cell membranes under ZnO-NPs treatment reacted in a different way. It has also been shown that Zn are not the main causative factor of ZnO-NPs toxicity. Investigating the early stages of mechanism of nanoparticles toxicity will allow for a more complete risk assessment and development of methods for a safer synthesis of engineering nanomaterials.
纳米技术的发展导致氧化锌纳米粒子(ZnO-NPs)的产量增加,并将其应用于各种日常产品。这就需要对其对人类的安全性进行全面评估。本研究旨在评估 ZnO-NPs 对免疫模型人细胞:U-937、HL-60、HUT-78 和 COLO-720L 的毒性作用。特别关注纳米粒子与膜脂质的直接相互作用以及锌离子在其毒性机制中的作用。测试了细胞活力、脂质过氧化、细胞膜完整性以及从纳米粒子释放的锌离子量。当 ZnO-NPs 浓度达到 6.25mg/L 时,细胞代谢受到干扰。与 ZnO-NPs 接触导致所有细胞发生脂质过氧化,并与 HL-60、HUT-78 和 COLO-720L 细胞的膜破裂相关。使用模型单层(Langmuir 技术)来评估纳米粒子与研究脂质的相互作用。计算了诸如最大层压缩时的分子面积、单层坍塌时的压力和静态压缩模量等物理化学参数。在 ZnO-NPs 处理下,HL-60 和 U-937 细胞膜的模型以不同的方式反应。还表明 Zn 不是 ZnO-NPs 毒性的主要原因。研究纳米粒子毒性机制的早期阶段将允许更全面的风险评估和开发更安全的工程纳米材料合成方法。