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Use of two biomarkers (CYP450 and acetylcholinesterase) in zebra mussel for the biomonitoring of Lake Maggiore (northern Italy)

机译:在斑马贻贝中使用两种生物标记物(CYP450和乙酰胆碱酯酶)进行马焦雷湖(意大利北部)的生物监测

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摘要

The use of zebra mussel Dreissena polymorpha as a bioaccumulator for lipophilic compounds is nowadays standardized, but its employment in early warning systems by the biomarker approach is much less frequent. One of the main problems with the biomarker approach is due to natural variation of abiotic factors such as temperature that influence the activity of several enzymes. In this study, we investigated the influence of this environmental parameter on the activities of two different biomarkers: acetylcholinesterase (AChE) (inhibited by organophosphorus compounds) and CYP450 (inversely influenced by planar compounds and heavy metals). We used these two biomarkers to evaluate the environmental pollution of Lake Maggiore (northern Italy). Results showed a strong AChE inhibition in mussel specimens collected in some sampling sites of the lake, indicating heavy pollution by neurotoxic compounds. We also found a twofold effect on CYP450 activity, probably due to the activating effect of planar compounds and the inhibiting effect of trace metals.
机译:斑马贻贝Dreissena polymorpha作为亲脂性化合物的生物蓄积剂的使用现今已标准化,但通过生物标记法在预警系统中的使用已经不那么频繁了。生物标志物方法的主要问题之一是由于非生物因素的自然变化,例如温度会影响几种酶的活性。在这项研究中,我们调查了此环境参数对两种不同生物标记物活性的影响:乙酰胆碱酯酶(AChE)(受有机磷化合物抑制)和CYP450(受平面化合物和重金属反过来影响)。我们使用这两种生物标记物评估了马焦雷湖(意大利北部)的环境污染。结果表明,在湖泊某些采样点采集的贻贝标本中,AChE具有很强的抑制作用,表明神经毒性化合物造成了严重污染。我们还发现对CYP450活性有双重影响,这可能是由于平面化合物的活化作用和痕量金属的抑制作用所致。

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