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Dynamic Model for the Accumulation of Cadmium and Zinc from Water and Sediment by the Aquatic Oligochaete, Tubifex tubifex

机译:水生低聚藻(Tubifextubifex)从水和沉积物中累积镉和锌的动力学模型

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摘要

In aquatic environments, organisms are exposed to and accumulate metals via waterborne and dietary routes including ingested sediment. A key element in understanding metal uptake and accumulation is information concerning the relative importance of the routes of uptake and the kinetics of the processes. In this work the bioaccumulation of the essential element zinc and the nonessential element cadmium were studied from the aqueous and sediment phase, in the cosmopolitan oligochaete Tubifex tubifex, using the radiotracers 109{sup left}Cd and 65{su p left}Zn. A compartmental kinetic model was constructed and parametrized by fitting the model to metal body concentrations. Using the pharmacokinetic modeling approach and taking into account the distribution of the metal between water and sediment, the different routes were quantitatively separated. Under the experimental conditions, the sediment phase accounted for 9.8% of the cadmium and 52% of the zinc uptake. These values are based on the uptake of the radiotracers spiked sediments and therefore likely represent maximal values since it was shown that under the specific conditions this was the most mobile metal fraction. This difference was largely explained by the large difference in assimilation efficiency between cadmium and zinc. Simulations of different conditions showed that both dissolved and sediment-associated metal can be important sources of metal exposure for the worms and that the relative importance strongly depends on the metal and exposure conditions including the lability of the metals in the sediment phase.
机译:在水生环境中,生物通过水和饮食途径(包括摄入的沉积物)接触并积累金属。了解金属吸收和积累的关键要素是有关吸收途径和过程动力学的相对重要性的信息。在这项工作中,利用放射性示踪剂109 {Cd}和65 {su p left} Zn从大都会的寡聚Tubifex tubifex中研究了水相和沉积物相中必需元素锌和非必需元素镉的生物富集。通过将模型拟合为金属体浓度,构建了隔室动力学模型并进行了参数化。使用药代动力学建模方法,并考虑到金属在水和沉积物中的分布,定量分离了不同的途径。在实验条件下,沉积相占镉的9.8%和锌吸收的52%。这些值基于放射性示踪剂加标沉积物的吸收,因此可能表示最大值,因为已表明在特定条件下这是最易移动的金属部分。这种差异很大程度上是由于镉和锌之间的同化效率差异很大。不同条件的模拟表明,溶解的金属和与沉积物相关的金属都可能是蠕虫暴露金属的重要来源,相对重要性在很大程度上取决于金属和暴露条件,包括沉积相中金属的不稳定性。

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