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首页> 外文期刊>Environmental Science and Pollution Research >Combined use of DGT and transplanted shrimp (Litopenaeus vannamei) to assess the bioavailable metals of complex contamination: implications for implementing bioavailability-based water quality criteria
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Combined use of DGT and transplanted shrimp (Litopenaeus vannamei) to assess the bioavailable metals of complex contamination: implications for implementing bioavailability-based water quality criteria

机译:联合使用DGT和虾对虾(Litopenaeus vannamei)评估复杂污染的生物利用度金属:对实施基于生物利用度的水质标准的意义

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The diffusive gradients in thin films (DGT) were field deployed alongside the shrimp Litopenaeus vannamei at seven sites with different levels of contamination to assess the potentially bioavailable and toxic fraction of metal contaminants. After 7 days of exposure, several antioxidant bio-markers were quantified in hepatopancreas of exposed shrimps, and tissue levels as well as the total, dissolved, and DGT-labile concentrations of metal contaminants were determined in the pooled site samples. The results showed that the caged shrimps had high tissue contaminant concentrations and significantly inhibited antioxidant responses at the more contaminated sites. DGT-labile metal concentrations provided better spatial resolution of differences in metal contamination when compared with traditional bottle sampling and transplanted shrimp. The total, dissolved, and DGT-labile metal fractions were used to evaluate the potential bioavailability of metal contaminants, comparing with metal accumulation and further linking to antioxidant biomarker responses in tissues of exposed shrimps. Regression analysis showed the significant correlations between DGT-Cu concentrations and tissue-Cu and activities of some biomarker responses in the shrimp hepatopancreas. This indicated that DGT-labile Cu concentrations provided the better prediction of produced biological effects and of the bioavailability than the total or dissolved concentrations. The study supports the use of methods combining transplanted organisms and passive sampling for assessing the chemical and ecotoxicological status of aqueous environments and demonstrates the capability of the DGT technique as a powerful tool for measuring the bioavailability-based water quality in variable coastal environments.
机译:薄膜(DGT)中的扩散梯度与虾对虾凡纳滨对虾一起在七个污染程度不同的地点现场部署,以评估金属污染物的潜在生物利用度和有毒成分。暴露7天后,对暴露虾肝胰腺中的几种抗氧化剂生物标志物进行定量,并在合并部位的样品中确定组织水平以及金属污染物的总,溶解和DGT不稳定浓度。结果表明,笼养虾具有较高的组织污染物浓度,并在受到更多污染的部位显着抑制了抗氧化反应。与传统的瓶装采样和移植虾相比,DGT不稳定的金属浓度可提供更好的空间分辨金属污染差异的空间分辨率。将总的,溶解的和DGT不稳定的金属馏分用于评估金属污染物的潜在生物利用度,将其与金属积累进行比较,并进一步与裸虾组织中的抗氧化剂生物标志物响应联系起来。回归分析表明,虾肝胰腺中DGT-Cu的浓度与组织Cu的含量以及某些生物标志物的活性之间存在显着的相关性。这表明与总浓度或溶解浓度相比,DGT不稳定的铜浓度可更好地预测产生的生物学效应和生物利用度。这项研究支持使用结合了移植生物和被动采样的方法来评估水性环境的化学和生态毒理状况,并证明了DGT技术的功能,可以作为在可变的沿海环境中测量基于生物利用度的水质的有力工具。

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