Wicklund Glynn A
Department of Environmental and Developmental Biology, Uppsala University, Norbyvägen 19, SE-751 22 Uppsala, Sweden.
Comp Biochem Physiol C Toxicol Pharmacol. 2001 Feb;128(2):165-72. doi: 10.1016/s1532-0456(00)00188-5.
Zn (0-16 microM) effects on apical Cd uptake from the water into the branchial epithelium and influx of Cd from the water to the circulatory system in zebrafish (Danio rerio) were studied in three experiments. Apical Cd uptake was decreased by Zn in all three experiments. In fish exposed to 1-600 nM Cd (experiment 1), apical Cd uptake showed saturation kinetics at 2 and 4 microM Zn, and a competitive interaction was indicated. At 16 microMZn, Cd uptake increased linearly. Cadmium influx did not show saturation kinetics, but was inhibited by 16 microM Zn at low Cd exposure concentrations. In fish exposed to 0.1-600 nM Cd (experiment 2), Cd uptake was inhibited by 16 microM Zn, whereas at 30 nM Cd uptake was inhibited by 2 microM Zn. Similarly, 2 microM Zn did not influence Cd uptake in fish exposed to 0.1-2 nM Cd (experiment 3), whereas 2 microM Zn inhibited uptake at 8-30 nM Cd. Zinc also inhibited Cd influx at higher Cd concentrations. However, at lower Cd exposures, a Zn-induced increased influx was indicated. Zinc influences the Cd uptake and influx processes at several sites in the branchial epithelial cells, indicating that influx of Zn2+ and Cd2+ occurs through common pathways.
在三个实验中研究了锌(0 - 16微摩尔)对斑马鱼(Danio rerio)鳃上皮从水中摄取顶端镉以及镉从水流入循环系统的影响。在所有三个实验中,锌均降低了顶端镉的摄取。在暴露于1 - 600纳摩尔镉的鱼中(实验1),在2和4微摩尔锌时顶端镉摄取呈现饱和动力学,表明存在竞争性相互作用。在16微摩尔锌时,镉摄取呈线性增加。镉流入未显示饱和动力学,但在低镉暴露浓度下被16微摩尔锌抑制。在暴露于0.1 - 600纳摩尔镉的鱼中(实验2),16微摩尔锌抑制了镉摄取,而在30纳摩尔镉时,2微摩尔锌抑制了镉摄取。同样,在暴露于0.1 - 2纳摩尔镉的鱼中(实验3),2微摩尔锌不影响镉摄取,而在8 - 30纳摩尔镉时2微摩尔锌抑制了摄取。锌在较高镉浓度下也抑制了镉流入。然而,在较低镉暴露时,表明锌诱导流入增加。锌在鳃上皮细胞的多个位点影响镉摄取和流入过程,表明锌离子和镉离子的流入通过共同途径发生。