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Waterborne vs. dietary copper uptake in rainbow trout and the effects of previous waterborne copper exposure

机译:虹鳟鱼的水性与膳食铜摄取量以及之前水性铜暴露的影响

摘要

Juvenile rainbow trout (Oncorhynchus mykiss) were exposed to waterborne Cu (22 microg/l) in moderately hard water for up to 28 days. Relative to control fish kept at background Cu levels (2 microg/l), Cu-preexposed fish displayed decreased uptake rates of waterborne Cu via the gills but not of dietary Cu via the gut during 48-h exposures to (64)Cu-radiolabeled water and diet, respectively. At normal dietary and waterborne Cu levels, the uptake rates of dietary Cu into the whole body without the gut were 0.40-0.90 ng. g(-1). h(-1), >10-fold higher than uptake rates of waterborne Cu into the whole body without the gills, which were 0.02-0.07 ng. g(-1). h(-1). Previously Cu-exposed fish showed decreased new Cu accumulation in the gills, liver, and carcass during waterborne (64)Cu exposures and in the liver during dietary (64)Cu exposures. A 3-h gill Cu-binding assay showed downregulation of the putative high-affinity, low-capacity Cu transporters and upregulation of the low-affinity, high-capacity Cu transporters at the gills in Cu-preexposed fish. Exchangeable Cu pools in all the tissues were higher during dietary than during waterborne (64)Cu exposures, and previous Cu exposure reduced waterborne exchangeable Cu pools in gill, liver, and carcass. Overall, these results suggest a quantitatively greater role for the dietary than for the waterborne route of Cu uptake, a key role for the gill in Cu homeostasis, and important roles for the liver and gut in the normal metabolism of Cu in fish.
机译:将少年虹鳟(Oncorhynchus mykiss)暴露于中等硬度的水中的水性铜(22 microg / l)中长达28天。相对于保持在背景铜水平(2 microg / l)的对照鱼而言,暴露于(64)Cu放射性标记的48小时内,暴露于Cu的鱼显示出通过ill的水性Cu摄取速率降低,但通过肠道未摄取膳食中的Cu。水和饮食分别。在正常饮食和水基铜水平下,无肠的饮食中铜对全身的摄取率为0.40-0.90 ng。 g(-1)。 h(-1),比不带g的水性Cu进入全身的吸收率高0.02-0.07 ng,高10倍。 g(-1)。 h(-1)。以前,暴露于铜的鱼在水(64)Cu暴露期间和在饮食(64)Cu暴露期间在showed,肝脏和car体中以及肝脏中新的Cu积累减少。 3小时g刺Cu结合试验显示,在暴露于铜的鱼中,high的假定的高亲和力,低容量的Cu转运蛋白下调,而低亲和力,高容量的Cu转运蛋白上调。饮食中所有组织中的可交换铜库都高于水暴露(64)Cu,而先前的铜暴露减少了g,肝和car体中的水可交换铜库。总体而言,这些结果表明,膳食中铜的摄入量比水基途径的摄入量更大,,在铜稳态中的关键作用以及肝脏和肠道在鱼中铜的正常代谢中的重要作用。

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