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氧化铜纳米颗粒与光照对莱茵衣藻的交互作用。

Interactive effects of copper oxide nanoparticles and light to green alga Chlamydomonas reinhardtii.

作者信息

Cheloni Giulia, Marti Elodie, Slaveykova Vera I

机构信息

Environmental Biogeochemistry and Ecotoxicology, Institute F.-A. Forel, Earth and Environmental Sciences, Faculty of Sciences, University of Geneva, 10 route de Suisse, CH-1290 Versoix, Switzerland.

Environmental Biogeochemistry and Ecotoxicology, Institute F.-A. Forel, Earth and Environmental Sciences, Faculty of Sciences, University of Geneva, 10 route de Suisse, CH-1290 Versoix, Switzerland.

出版信息

Aquat Toxicol. 2016 Jan;170:120-128. doi: 10.1016/j.aquatox.2015.11.018. Epub 2015 Nov 23.

Abstract

The present study explores the effect of light with different spectral composition on the stability of CuO-nanoparticle (CuO-NP) dispersions and their effects to green alga Chlamydomonas reinhardtii. The results showed that simulated natural light (SNL) and light with enhanced UVB radiation (UVR*) do not affect the dissolution of CuO-NPs as compared to light irradiation conditions typically used in laboratory incubator (INC). Comparable values of ζ-potential and hydrodynamic size during 24h were found under all studied conditions. Concentrations of CuO-NPs below 1mgL(-1) do not attenuate the light penetration in the algal suspensions in comparison with NP-free system. Exposure to a combination of 8μgL(-1) or 0.8mgL(-1) CuO-NPs and INC or SNL has no significant effect on the algal growth inhibition, algal fluorescence and membrane integrity under short-term exposure. However, an enhancement of the percentage of cells experiencing oxidative stress was observed upon exposure to 0.8mgL(-1) CuO-NPs and SNL for 4 and 8h. Combination of UVR* and 0.8mgL(-1) CuO-NPs resulted in synergistic effects for all biological endpoints. Despite the photocatalytic properties of CuO-NPs no significant increase in abiotic reactive oxygen species (ROS) production under simulated solar radiation was observed suggesting that the synergistic effect observed might be correlated to other factors than CuO-NP-mediated ROS photoproduction. Tests performed with CuSO4 confirmed the important role of dissolution as toxicity driving force for lower CuO-NP concentration. However, they failed to clarify the contribution of dissolved Cu on the combined effects at 0.8mgL(-1) CuO-NPs. The results point out the necessity of taking into account the possible interactions between ENPs and changing light conditions when evaluating the potential effects of ENPs to phytoplankton in natural waters.

摘要

本研究探讨了不同光谱组成的光对氧化铜纳米颗粒(CuO-NP)分散体稳定性的影响及其对绿藻莱茵衣藻的影响。结果表明,与实验室培养箱(INC)中通常使用的光照条件相比,模拟自然光(SNL)和增强UVB辐射的光(UVR*)不会影响CuO-NPs的溶解。在所有研究条件下,24小时内ζ电位和流体动力学尺寸的值相当。与无NP系统相比,浓度低于1mgL(-1)的CuO-NPs不会减弱藻类悬浮液中的光穿透。在短期暴露下,暴露于8μgL(-1)或0.8mgL(-1) CuO-NPs与INC或SNL的组合对藻类生长抑制、藻类荧光和膜完整性没有显著影响。然而,在暴露于0.8mgL(-1) CuO-NPs和SNL 4小时和8小时后,观察到经历氧化应激的细胞百分比增加。UVR*和0.8mgL(-1) CuO-NPs的组合对所有生物学终点产生协同效应。尽管CuO-NPs具有光催化特性,但在模拟太阳辐射下未观察到非生物活性氧(ROS)产生的显著增加,这表明观察到的协同效应可能与CuO-NP介导的ROS光产生以外的其他因素有关。用硫酸铜进行的测试证实了溶解作为低CuO-NP浓度毒性驱动力的重要作用。然而,它们未能阐明溶解的铜对0.8mgL(-1) CuO-NPs联合效应的贡献。结果指出,在评估环境纳米颗粒对天然水体中浮游植物的潜在影响时,有必要考虑环境纳米颗粒与变化的光照条件之间可能的相互作用。

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