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Inhibition of iron and copper uptake by iron, copper and zinc

机译:铁,铜和锌抑制铁和铜的吸收

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摘要

Interactions of micronutrients can affect absorption and bioavailability of other nutrients by a number of mechanisms. In aqueous solutions, and at higher uptake levels, competition between elements with similar chemical characteristics and uptake process can take place. The consequences of these interactions may depend on the relative concentrations of the nutrients. In this work, we measure the effects of increasing concentrations of iron, zinc, and copper on iron and copper uptake in Caco-2 cells. Intracellular Fe or Cu levels were affected by incubating with increased concentrations of metals. However, when the cells already had different intracellular metal concentration, the uptake of Fe or Cu was nor affected. In competition studies, we showed that Cu and Zn inhibited Fe uptake, and while Fe inhibited Cu uptake, Zn did not. When the three metals were given together (1: 1: 1 ratio), Fe or Cu uptake was inhibited ~40%. These results point to a potential risk in the absorption and bioavailability of these minerals by the presence of other minerals in the diet. This aspect must be considered in food supplementation and fortification programs.
机译:微量营养素的相互作用可通过多种机制影响其他营养素的吸收和生物利用度。在水溶液中,在较高的吸收水平下,具有相似化学特性和吸收过程的元素之间可能发生竞争。这些相互作用的结果可能取决于养分的相对浓度。在这项工作中,我们测量了铁,锌和铜浓度增加对Caco-2细胞中铁和铜吸收的影响。与浓度升高的金属一起孵育会影响细胞内铁或铜的水平。但是,当细胞已经具有不同的细胞内金属浓度时,铁或铜的吸收也不会受到影响。在竞争研究中,我们表明铜和锌抑制了铁的吸收,而铁抑制了铜的吸收,锌却没有。当将三种金属放在一起(1:1 1:1的比例)时,Fe或Cu的吸收被抑制了约40%。这些结果表明,饮食中存在其他矿物质可能会对这些矿物质的吸收和生物利用度造成潜在风险。在食品补充和强化计划中必须考虑这一方面。

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