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首页> 外文期刊>Marine & freshwater research >Stable isotope analysis to detect copper (Cu) accumulation in species with high endogenous Cu concentrations: linking Cu accumulation with toxic effects in the gastropod Bembicium nanum
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Stable isotope analysis to detect copper (Cu) accumulation in species with high endogenous Cu concentrations: linking Cu accumulation with toxic effects in the gastropod Bembicium nanum

机译:稳定的同位素分析以检测具有高内源Cu浓度的物种中的铜(Cu)积累:将Cu积累与胃肠杆菌Bembicium Nanum中的毒性作用连接

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摘要

Tissue metal concentrations are widely used as indicators of environmental contamination. High endogenous concentrations of essential metals such as copper (Cu) can mask changes in tissue metal concentrations. Experiments using enriched isotopes can provide greater insight into endogenous Cu exchange and more broadly the exposure-bioaccumulation-response relationship. The aim of the present study was to investigate the effect of Cu exposure through the dietary uptake route in the intertidal gastropod Bembicium nanum. The marine alga Tetraselmis chuii was cultured at different Cu concentrations and fed to B. nanum. The Cu concentrations in T. chuii and B. nanum were analysed. Effects were measured using the biomarkers - total antioxidant capacity, lipid peroxidation and lysosomal membrane destabilisation in B. nanum. Dietary uptake of Cu in B. nanum was investigated with a feeding experiment using a Cu-65 isotopically enriched solution. Although there were no significant differences in the Cu concentrations in B. nanum, lysosomal membrane destabilisation increased with the dietary Cu concentration. The Cu-65 experiment demonstrated that B. nanum accumulated Cu under the experimental conditions. The study showed that tissue Cu concentrations are not always indicative of effects in organisms and that enriched isotope analysis assists in understanding the exposure-bioaccumulation-response relationship.
机译:组织金属浓度被广泛用作环境污染的指标。高内源性浓度铜(Cu)如铜(Cu)可以掩盖组织金属浓度的变化。使用富集同位素的实验可以对内源性Cu交换提供更大的洞察力,并且更广泛地暴露 - 生物积累 - 反应关系。本研究的目的是探讨Cu暴露通过透射性胃肠杆菌纳米培石中的膳食摄取途径的影响。在不同的Cu浓度下培养海藻藻藻藻氏菌,并喂入B.Nanum。分析了T.Chuii和B.Nanum的Cu浓度。使用生物标志物 - 纳米B.Nanum中的总抗氧化能力,脂质过氧化和溶酶体膜不稳定来测量效果。使用Cu-65同位素富集溶液,研究了B.纳米中Cu的膳食摄取。虽然B.Nanum中的Cu浓度没有显着差异,但随着膳食Cu浓度的增加,溶酶体膜不稳定增加。 CU-65实验表明B.纳姆在实验条件下累积Cu。该研究表明,组织Cu浓度并不总是指示生物体的影响,并且富集的同位素分析有助于了解暴露 - 生物累积 - 反应关系。

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