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Tidal Influence On The Distribution Of Hydrophobic Organic Contaminants In The Seine Estuary And Biomarker Responses On The Copepod Eurytemora Affinis

机译:潮汐对塞纳河口疏水性有机污染物分布的影响以及The足类拟南芥的生物标志物响应

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To elucidate tidally related variations of hydrophobic organic contaminant (HOC) bioavailability and the impact of these contaminants on estuarine ecosystems, both PCB and PAH concentrations were investigated in the dissolved phase and in the suspended paniculate material (SPM) of the Seine Estuary. Both PAH and PCB highest levels were observed in surface and bottom water when SPM remobilizations were maximum, in relation to higher speed currents. In parallel, acetylcholinesterase (AChE) and glutathione-S-transferase (GST) activities were investigated in the copepod Eurytemora affinis. Significant decreasing AChE levels were measured during the tidal cycle and between surface and bottom copepods related to salinity and to HOC concentration variations. Significant increasing GST levels were also observed when HOC concentrations in the water column were the highest. This study underlined the need to standardize sampling procedures for biomonitoring studies in order to avoid interfering factors that could modify biomarker responses to chemical exposure.
机译:为了阐明与潮汐有关的疏水性有机污染物(HOC)生物利用度的变化以及这些污染物对河口生态系统的影响,在塞纳河口的溶解相和悬浮颗粒材料(SPM)中研究了PCB和PAH的浓度。当SPM迁移量最大时,相对于高速电流,PAH和PCB的最高含量都出现在地表和底部水中。同时,在the足类Eurytemora affinis中研究了乙酰胆碱酯酶(AChE)和谷胱甘肽S-转移酶(GST)的活性。在潮气周期以及与盐度和HOC浓度变化有关的表足和足底co足类之间,AChE水平显着下降。当水柱中的HOC浓度最高时,也观察到GST水平显着增加。这项研究强调有必要标准化生物监测研究的采样程序,以避免可能改变生物标志物对化学物反应的干扰因素。

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