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首页> 外文期刊>Aquatic Toxicology >Multi-metal interactions between Cd, Cu, Ni, Pb and Zn in water flea Daphnia magna, a stable isotope experiment
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Multi-metal interactions between Cd, Cu, Ni, Pb and Zn in water flea Daphnia magna, a stable isotope experiment

机译:水蚤蚤中镉,铜,镍,铅和锌之间的多金属相互作用,一种稳定的同位素实验

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Metal interaction effects were investigated in Daphnia magna during a simultaneous exposure to essential (Cu, Ni and Zn) and non-essential (Cd and Pb) metals at environmentally relevant concentrations using a stable isotope technique. The metals were applied in the following concentration ranges: 0.0125-0.2oM for p#eCd, 0.025-0.25oM for eeCu and potPb, 0.1-1.25oM for epoNi and e"Zn. Cadmium and copper exhibited a suppressing effect on the uptake rates of all other metals present in the mixture with the exception to lead at all studied concentrations. The effect was already pronounced at low Cd and Cu concentrations and reached a maximum at the higher concentrations. Nickel and zinc showed weaker interactions with cadmium and between each other, while having no effect on copper and lead uptake. There was a high degree of correlation between Cd, Ni and Zn uptake rates indicating that these metals share in part common uptake or interaction pathways. Moreover, a significant correlation between Zn and Cu uptake processes suggests that more than one mechanism is involved in Zn accumulation since Cu is known to interact with Na uptake sites. The uptake of lead was marked by a high initial rate, but the uptake process reached saturation within 24h. Cd applied at a concentration of 0.2oM was the only metal which affected the lead uptake process by stimulation of the Pb uptake. Added to the medium at a concentration of 0.25oM, lead in turn, increased copper uptake. Current work illustrates that metal interactions are significant and occur at low environmentally realistic concentrations affecting bioavailability of both toxic and essential metals.
机译:使用稳定同位素技术,在水蚤同时暴露于环境相关浓度的必需金属(铜,镍和锌)和非必需金属(镉和铅)期间,研究了金属相互作用的影响。金属的施用浓度范围如下:p#eCd为0.0125-0.2oM,eeCu和potPb为0.025-0.25oM,epoNi和e“ Zn为0.1-1.25oM。镉和铜对吸收速率具有抑制作用混合物中存在的所有其他金属,但在所有研究浓度下都不含铅;在低Cd和Cu浓度下效果已经很明显,而在较高浓度下效果最大;镍和锌与镉之间以及彼此之间的相互作用较弱,但对铜和铅的吸收没有影响,镉,镍和锌的吸收率之间存在高度相关性,表明这些金属在部分共同的吸收或相互作用途径中共享,而且锌和铜的吸收过程之间也具有显着的相关性这表明锌的累积涉及一种以上的机制,因为已知铜会与Na的吸收位点相互作用,铅的吸收以较高的初始速率为特征,但吸收过程达到ED在24小时内饱和。浓度为0.2oM的镉是唯一通过刺激Pb吸收而影响铅吸收过程的金属。铅以0.25oM的浓度添加到培养基中,反过来又增加了铜的吸收。当前的工作表明,金属相互作用是显着的,并且以对环境有影响的低浓度发生,从而影响有毒金属和必需金属的生物利用度。

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