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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Toxicological effects of copper oxide nanoparticles on the growth rate, photosynthetic pigment content, and cell morphology of the duckweed Landoltia punctata
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Toxicological effects of copper oxide nanoparticles on the growth rate, photosynthetic pigment content, and cell morphology of the duckweed Landoltia punctata

机译:氧化铜纳米颗粒对浮萍蓝点藻生长速率,光合色素含量和细胞形态的毒理作用

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摘要

Recently, the application of copper oxide nanoparticles (CuO-NPs) has increased considerably, primarily in scientific and industrial fields. However, studies to assess their health risks and environmental impacts are scarce. Therefore, the present study aims to evaluate the toxicological effects of CuO-NPs on the duckweed species Landoltia punctata, which was used as a test organism. To accomplish this, duckweed was grown under standard procedures according to ISO DIS 20079 and exposed to three different concentrations of CuO-NPs (0.1, 1.0, and 10.0 g L-1), with one control group (without CuO-NPs). The toxicological effects were measured based on growth rate inhibition, changes in the plant's morphology, effects on ultrastructure, and alterations in photosynthetic pigments. The morphological and ultrastructural effects were evaluated by electronic, scanning and light microscopic analysis, and CuO-NPs were characterized using transmission electron microscopy (TEM), zeta potential, and superficial area methods of analysis. This analysis was performed to evaluate nanoparticle size and form in solution and sample stability. The results showed that CuO-NPs affected morphology more significantly than growth rate. L. punctata also showed the ability to remove copper ions. However, for this plant to be representative within the trophic chain, the biomagnification of effects must be assessed.
机译:最近,主要在科学和工业领域中,氧化铜纳米颗粒(CuO-NPs)的应用已大大增加。但是,缺乏评估其健康风险和环境影响的研究。因此,本研究旨在评估CuO-NPs对浮萍物种Landoltia punctata的毒性,该浮萍被用作测试生物。为此,按照ISO DIS 20079在标准程序下种植浮萍,并用三种对照组(无CuO-NP)暴露于三种不同浓度的CuO-NP(0.1、1.0和10.0 g L-1)下。根据生长速率抑制,植物形态的变化,对超微结构的影响以及光合色素的变化来测量毒理学效应。通过电子,扫描和光镜分析对形态和超微结构的影响进行评估,并使用透射电子显微镜(TEM),ζ电位和表浅分析法对CuO-NP进行表征。进行该分析以评估溶液中的纳米颗粒尺寸和形式以及样品的稳定性。结果表明,CuO-NPs对形态的影响比对生长速率的影响更大。芒草也显示出去除铜离子的能力。但是,为了使该植物在营养链中具有代表性,必须评估作用的生物放大倍数。

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