首页> 外文期刊>Environmental Toxicology and Chemistry >ASSESSMENT OF THE TOXICITY OF MIXTURES OF NICKEL OR CADMIUM WITH 9,10-PHENANTHRENEQUINONE TO DAPHNIA MAGNA: IMPACT OF A REACTIVE OXYGEN-MEDIATED MECHANISM WITH DIFFERENT REDOX-ACTIVE METALS
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ASSESSMENT OF THE TOXICITY OF MIXTURES OF NICKEL OR CADMIUM WITH 9,10-PHENANTHRENEQUINONE TO DAPHNIA MAGNA: IMPACT OF A REACTIVE OXYGEN-MEDIATED MECHANISM WITH DIFFERENT REDOX-ACTIVE METALS

机译:镍或镉与9,10-菲基苯醌混合后对DAPHNIA MAGNA的毒性评估:活性氧介导的不同氧化还原活性金属的影响

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Recently, we showed that reactive oxygen species (ROS) formation was involved in the toxicity of the redox-active metal Cu and mixtures of Cu plus a photomodified polycyclic aromatic hydrocarbon (PAH), phenanthrenequinone (PHQ), to Daphnia magna. It is unknown, however, if similar results can be observed for metals with lower or no redox activity and their mixtures with PHQ. In the present study using D. magna, the toxicity of Ni, a weakly redox-active metal, and of Cd, a non–redox active metal, was examined with or without PHQ. The abilities of Ni, Cd, PHQ, and binary mixtures of metal plus PHQ to generate ROS were measured using a 2′,7′-dichlorofluorescein fluorescence assay. The results were compared with the results of Cu and mixtures of Cu plus PHQ from a recent study by our group. The order of metal toxicity to D. magna was found to be Cd Cu > Ni. As with Cu/PHQ mixtures, synergistic toxicity was observed for mixtures of Ni and PHQ, whereas additive toxicity was observed for mixtures of Cd and PHQ. Alone, PHQ had no impact on ROS levels in D. magna. Nickel alone caused elevated ROS, which was further enhanced in the presence of PHQ. Neither Cd nor Cd/PHQ mixtures increased ROS production. Attenuation of toxicity and ROS production was observed in response to treatment with low concentrations of l-ascorbic acid. These results indicate potential toxic interactions between metals and modified PAHs. With redox-active metals, such as Cu and Ni, and modified PAHs, such as PHQ, these interactions can involve ROS formation.
机译:最近,我们表明活性氧(ROS)的形成与氧化还原活性金属Cu以及Cu加光改性的多环芳烃(PAH),菲醌(PHQ)的混合物对水蚤的毒性有关。但是,对于氧化还原活性较低或没有氧化活性的金属及其与PHQ的混合物,是否可以观察到相似的结果,这是未知的。在使用D. magna的本研究中,在有或没有PHQ的情况下,均检测了弱氧化还原活性金属Ni和非氧化还原活性金属Cd的毒性。使用2',7'-二氯荧光素荧光测定法测量Ni,Cd,PHQ和金属加PHQ的二元混合物生成ROS的能力。将结果与我们小组最近的一项研究中的Cu以及Cu加PHQ的混合物的结果进行了比较。发现金属对D. magna的毒性顺序为Cd Cu> Ni。与Cu / PHQ混合物一样,Ni和PHQ的混合物具有协同毒性,而Cd和PHQ的混合物具有协同毒性。 PHQ单独对D. magna中的ROS水平没有影响。单独的镍会导致ROS升高,在PHQ存在下会进一步增强。 Cd和Cd / PHQ混合物均不会增加ROS的产生。观察到低浓度的l-抗坏血酸对毒性和ROS产生的减弱。这些结果表明金属和改性的PAHs之间潜在的毒性相互作用。对于具有氧化还原活性的金属(例如Cu和Ni)和改性的PAH(例如PHQ),这些相互作用可能涉及ROS的形成。

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