首页> 美国卫生研究院文献>Sensors (Basel, Switzerland) >The Effect of Composition of Different Ecotoxicological Test Media on Free and Bioavailable Copper from CuSO4 and CuO Nanoparticles: Comparative Evidence from a Cu-Selective Electrode and a Cu-Biosensor
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The Effect of Composition of Different Ecotoxicological Test Media on Free and Bioavailable Copper from CuSO4 and CuO Nanoparticles: Comparative Evidence from a Cu-Selective Electrode and a Cu-Biosensor

机译:不同生态毒理学测试介质的组成对来自CuSO4和CuO纳米粒子的游离铜和可生物利用铜的影响:来自铜选择性电极和铜生物传感器的比较证据

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摘要

The analysis of (bio)available copper in complex environmental settings, including biological test media, is a challenging task. In this study, we demonstrated the potential of a recombinant Pseudomonas fluorescens-based biosensor for bioavailability analysis of CuSO4 and CuO nanoparticles (nano-CuO) in seventeen different ecotoxicological and microbiologial test media. In parallel, free Cu in these test media was analysed using Cu-ion selective electrode (Cu-ISE). In the case of CuSO4, both free and bioavailable Cu decreased greatly with increasing concentration of organics and phosphates in the tested media. A good correlation between free and bioavailable Cu was observed (r = 0.854, p < 0.01) indicating that the free Cu content in biological test media may be a reasonably good predictor for the toxicity of CuSO4. As a proof, it was demonstrated that when eleven EC50 values for CuSO4 from different organisms in different test media were normalized for the free Cu in these media, the difference in these EC50 values was decreased from 4 to 1.8 orders of magnitude. Thus, toxicity of CuSO4 to these organisms was attributed to the properties of the test media rather than to inherent differences in sensitivity between the test organisms. Differently from CuSO4, the amount of free and bioavailable Cu in nano-CuO spiked media was not significantly correlated with the concentration of organics in the test media. Thus, the speciation of nano-CuO in toxicological test systems was not only determined by the complexation of Cu ions but also by differential dissolution of nano-CuO in different test conditions leading to a new speciation equilibrium. In addition, a substantial fraction of nano-CuO that was not detectable by Cu-ISE (i.e., not present as free Cu-ions) was bioavailable to Cu-biosensor bacteria. Thus, in environmental hazard analysis of (nano) particulate materials, biosensor analysis may be more informative than other analytical techniques. Our results demonstrate that bacterial Cu-biosensors either in combination with other analytical/speciation techniques or on their own, may serve as a rapid (eco)toxicological screening method.
机译:在复杂的环境中(包括生物测试介质)对(生物)可用铜的分析是一项艰巨的任务。在这项研究中,我们证明了基于荧光假单胞菌的重组生物传感器在17种不同的生态毒理学和微生物学测试培养基中对CuSO4和CuO纳米颗粒(纳米CuO)的生物利用度分析的潜力。同时,使用铜离子选择性电极(Cu-ISE)分析了这些测试介质中的游离铜。在CuSO4的情况下,随着测试介质中有机物和磷酸盐的浓度增加,游离态铜和生物利用度铜都大大降低。观察到游离铜和可生物利用的铜之间具有良好的相关性(r = 0.854,p <0.01),表明生物学测试介质中的游离铜含量可能是CuSO4毒性的合理良好预测指标。作为证明,证明了当针对不同培养基中的游离Cu标准化来自不同生物的CuSO4的11个EC50值时,这些EC50值的差异从4个减少到1.8个数量级。因此,CuSO4对这些生物的毒性归因于测试培养基的特性,而不是归因于测试生物之间固有的灵敏度差异。与CuSO4不同,纳米CuO加标介质中游离和可生物利用的Cu的量与测试介质中有机物的浓度没有显着相关。因此,在毒理学测试系统中,纳米CuO的形态不仅取决于Cu离子的络合,还取决于纳米CuO在不同测试条件下的差异溶解,从而导致新的形态平衡。另外,Cu-生物传感器细菌可生物利用Cu-ISE无法检测到的大部分纳米CuO(即,不以游离Cu离子的形式存在)。因此,在(纳米)微粒材料的环境危害分析中,生物传感器分析可能比其他分析技术更具参考价值。我们的结果表明,细菌铜生物传感器可以与其他分析/形态技术结合使用,也可以单独使用,可以作为一种快速的(生态)毒理学筛选方法。

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