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首页> 外文期刊>Aquatic Toxicology >In vitro characterization of cadmium and zinc uptake via the gastro-intestinal tract of the rainbow trout (Oncorhynchus mykiss): Interactive effects and the influence of calcium.
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In vitro characterization of cadmium and zinc uptake via the gastro-intestinal tract of the rainbow trout (Oncorhynchus mykiss): Interactive effects and the influence of calcium.

机译:通过虹鳟(Oncorhynchus mykiss)胃肠道吸收镉和锌的体外特性:相互作用和钙的影响。

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摘要

An in vitro gut sac technique was employed to study whether Cd and Zn uptake mechanisms in the gastro-intestinal tract of the rainbow trout are similar to those at the gills, where both metals are taken up via the Ca transport pathway. Metal accumulation in surface mucus, in the mucosal epithelium, and transport into the blood space were assayed using radiolabelled Cd or Zn concentrations of 50mumolL(-1) in the luminal (internal) saline. Elevated luminal Ca (10 or 100mmolL(-1)versus 1mmolL(-1)) reduced Cd uptake into all three phases by approximately 60% in the stomach, but had no effect in the anterior, mid, or posterior intestine. This finding is in accordance with recent in vivo evidence that Ca is taken up mainly via the stomach, and that high [Ca] diets inhibit Cd accumulation from the food specifically in this section of the tract. In contrast, 10mmolL(-1) luminal Ca had no effect on Zn transport in any section, whereas 100mmolL(-1) Ca stimulated Zn uptake, by approximately threefold, into all three phases in the stomach only. There was no influence of elevated luminal Zn (10mmolL(-1)) on Cd uptake in the stomach or anterior intestine, or of high Cd (10mmolL(-1)) on Zn uptake in these sections. However, high [Zn] stimulated Cd transport into the blood space but inhibited accumulation in the mucosal epithelium and/or mucus-binding in the mid and posterior intestine, whereas high [Cd] exerted a reciprocal effect in the mid-intestine only. We conclude that Cd uptake occurs via an important Ca-sensitive mechanism in the stomach which is different from that at the gills, while Cd transport mechanisms in the intestine are not directly Ca-sensitive. Zn uptake does not appear to involve Ca uptake pathways, in contrast to the gills. These results are discussed in the context of other possible Cd and Zn transport pathways, and the emerging role of the stomach as an organ of divalent metal uptake.
机译:体外肠囊技术被用于研究虹鳟鱼胃肠道中Cd和Zn的摄取机制是否与the中的相似,在ill中,两种金属均通过Ca转运途径被吸收。使用腔内(生理)盐水中放射性标记的镉或锌浓度为50mumolL(-1)的方法测定表面黏液,黏膜上皮中金属的积累以及向血液空间的转运。腔内Ca升高(10或100mmolL(-1)相对于1mmolL(-1))可使胃中所有三个阶段的Cd吸收量降低约60%,但对前肠,中肠或后肠无影响。该发现与最近的体内证据相符,即体内Ca主要通过胃吸收,高[Ca]饮食会抑制食物中Cd的特别是Cd的积累。相比之下,在任何部分中10mmolL(-1)的腔内Ca对锌的转运都没有影响,而100mmolL(-1)Ca仅在胃中的所有三个相中刺激锌吸收约三倍。在这些部分中,腔内锌(10mmolL(-1))升高对胃或前肠中Cd的吸收没有影响,或者高Cd(10mmolL(-1))对锌的吸收没有影响。但是,高[Zn]刺激Cd转运到血液中,但抑制了粘膜上皮的积累和/或中肠和后肠的粘液结合,而高[Cd]仅在肠中起作用。我们得出结论,镉的吸收是通过一种重要的钙敏感性机制在胃中发生的,而这种机制与the处不同,而肠道中的镉转运机制并非直接对钙敏感。与the相比,锌的吸收似乎不涉及钙的吸收途径。这些结果将在其他可能的Cd和Zn转运途径以及胃作为二价金属吸收器官的新兴作用中进行讨论。

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