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Biomarker responses and biotransformation capacity in Arctic and temperate benthic species exposed to polycyclic aromatic hydrocarbons

机译:暴露于多环芳烃的北极和温带底栖生物的生物标志物响应和生物转化能力

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Monitoring parameters for the assessment of oil and gas related contaminants and their biological effects need validation before application in the Arctic. For such monitoring purposes, we evaluated the potential use of three biomarkers (acetylcholinesterase, acyl-CoA oxidase and glutathione S-transferase) for application to an Arctic bivalve (Astarte borealis) and determined the body residue of pyrene and two pyrene metabolites (1-hydroxypyrene and pyrene-1-glucuronide) in Arctic benthic species (bivalve: Macoma calcarea; polychaete: Nephtys ciliata) and temperate benthic species (bivalve: Limecola balthica; polychaete: Alitta virens) in order to establish the potential of polycyclic aromatic hydrocarbons (PAHs) metabolite profiles as biomarkers of exposure in such species. Experimental PAH exposure levels were probably too low (0.2-1.7 mg/kg dry weight in sediment) to induce or inhibit biomarker responses in A. borealis. Concentrations of pyrene and pyrene metabolites varied between species, although no consistent patterns could be established among taxonomic groups and locations. Metabolites made up to 79% of the total pyrene concentrations, indicating that basal metabolic activity is affecting pyrene kinetics even at low concentrations in all species. This indicates that Arctic and temperate species could show similar metabolism patterns of PAHs, although more insight into the effects of confounding factors is needed. (C) 2019 Published by Elsevier B.V.
机译:在北极地区应用之前,需要验证用于评估与油气有关的污染物及其生物效应的监测参数。为了进行此类监测,我们评估了三种生物标志物(乙酰胆碱酯酶,酰基辅酶A氧化酶和谷胱甘肽S-转移酶)在北极双壳类动物(北极虾)中的潜在用途,并确定了residue和两种pyr代谢物(1-北极底栖物种(双壳类:Macoma calcarea;多毛类:Nephtys ciliata)和温带底栖物种(双壳类:Limecola balthica;多毛壳类:Alitta virens)中的羟基py和pyr-1-葡萄糖醛,以建立多环芳烃(PAHs)的潜力)代谢物谱作为此类物种中暴露的生物标志物。实验性PAH暴露水平可能太低(沉积物中的干重0.2-1.7 mg / kg),无法诱导或抑制北方盲bio生物标志物的反应。 species和pyr代谢物的浓度在物种之间变化,尽管在分类学组和位置之间无法建立一致的模式。代谢物占pyr总浓度的79%,这表明即使在所有物种中低浓度下,基础代谢活性也会影响pyr的动力学。这表明,尽管需要更多了解混杂因素的影响,但北极和温带物种可能显示出类似的PAHs代谢模式。 (C)2019由Elsevier B.V.发布

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