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钨酸钴纳米颗粒(CoWO NPs)会影响绿色微藻小形隐球藻(Raphidocelis subcapitata)的光合性能。

Cobalt tungstate nanoparticles (CoWO NPs) affect the photosynthetic performance of the green microalga Raphidocelis subcapitata.

作者信息

Bruno de Abreu Cínthia, Gebara Renan Castelhano, Rocha Giseli Swerts, da Silva Mansano Adrislaine, Assis Marcelo, Pereira Thalles Maranesi, Sindra Virtuoso Luciano, Moreira Ailton José, Franklin Mayrink Nogueira Patrícia, Zucolotto Valtencir, Gama Melão Maria da Graça, Longo Elson

机构信息

Center for the Development of Functional Materials (CDMF), Federal University of São Carlos (UFSCar), Washington Luís Road, Km 235, 13565-905, São Carlos, SP, Brazil.

Center for the Development of Functional Materials (CDMF), Federal University of São Carlos (UFSCar), Washington Luís Road, Km 235, 13565-905, São Carlos, SP, Brazil.

出版信息

Chemosphere. 2025 Mar;372:144085. doi: 10.1016/j.chemosphere.2025.144085. Epub 2025 Jan 20.

Abstract

Innovative applications of cobalt tungstate nanoparticles (CoWO NPs) are directly linked to their increased production and consumption, which can consequently increase their release into aquatic ecosystems and the exposure of organisms. Microalgae are autotrophic organisms that contribute directly to global primary productivity and provide oxygen for maintaining many organisms on Earth. In this paper, we assessed the toxicity of CoWO NPs when in contact with the freshwater microalga Raphidocelis subcapitata (Chlorophyceae). To this end, we assessed algal growth, reactive oxygen species (ROS) production and photosynthetic performance. Our results show that the NPs inhibited the growth of algal cells from 42.37 mg L, significantly induced ROS production in the first hours of exposure (1 h) at all concentrations and directly compromised the photosynthetic activity, reinforcing that the oxygen-evolving complex (OEC) is one of the main targets of NPs and that the light curve parameters were the most sensitive endpoints. We observed reductions in the maximum relative electron transport rate (rETRmax) of around 53% and decreases in the saturating irradiance (Ek) of around 40%, which demonstrated that the NPs not only compromised the photosynthetic activity, but also decreased the ability of algal cells to tolerate high light intensities. Our results also highlight that Co was mostly particulate and that the dissolved fraction represented only ∼8% at the lowest concentration and ∼0.70% at the highest concentration of CoWO4 NPs, suggesting that the toxicity observed was caused by the NPs. CoWO NPs exhibited a high negative surface charge of -33mV in L.C. Oligo medium. The polydispersity index (PdI) varied from 0.22 to 0.45, while the hydrodynamic size ranged from 217.8 ± 11.36 to 503.43 ± 32.78 nm, indicating greater aggregation in this medium. This study elucidates how the CoWO NPs interact with R. subcapitata, resulting in changes mainly in its photosynthetic performance.

摘要

钨酸钴纳米颗粒(CoWO NPs)的创新应用与其产量和消费量的增加直接相关,这可能会导致其更多地释放到水生生态系统中,并增加生物体的暴露风险。微藻是自养生物,直接对全球初级生产力做出贡献,并为维持地球上许多生物提供氧气。在本文中,我们评估了CoWO NPs与淡水微藻纤细角毛藻(绿藻纲)接触时的毒性。为此,我们评估了藻类生长、活性氧(ROS)产生和光合性能。我们的结果表明,NPs在浓度为42.37 mg/L时抑制了藻类细胞的生长,在暴露的最初几个小时(1小时)内,所有浓度下均显著诱导了ROS的产生,并直接损害了光合活性,这进一步证明了放氧复合体(OEC)是NPs的主要靶标之一,且光曲线参数是最敏感的终点指标。我们观察到最大相对电子传递速率(rETRmax)降低了约53%,饱和光强(Ek)降低了约40%,这表明NPs不仅损害了光合活性,还降低了藻类细胞耐受高光强的能力。我们的结果还突出表明,Co主要以颗粒形式存在,在最低浓度的CoWO4 NPs中,溶解部分仅占约8%,在最高浓度时占约0.70%,这表明观察到的毒性是由NPs引起的。在L.C. Oligo培养基中,CoWO NPs表现出-33mV的高负表面电荷。多分散指数(PdI)在0.22至0.45之间变化,而流体动力学尺寸范围为217.8±11.36至503.43±32.78 nm,表明在该培养基中聚集程度更高。本研究阐明了CoWO NPs如何与纤细角毛藻相互作用,主要导致其光合性能发生变化。

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