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Home alone-The effects of isolation on uptake of a pharmaceutical contaminant in a social fish

机译:独自在家-隔离对社交鱼中药物污染物吸收的影响

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A wide range of biologically active pharmaceutical residues is present in aquatic systems worldwide. As uptake potential and the risk of effects in aquatic wildlife are directly coupled, the aim of this study was to investigate the relationships between stress by isolation, uptake and effects of the psychiatric pharmaceutical oxazepam in fish. To do this, we measured cortisol levels, behavioral stress responses, and oxazepam uptake under different stress and social conditions, in juvenile perch (Percafluviatilis) that were either exposed (1.03 mu gl(-1)) or not exposed to oxazepam. We found single exposed individuals to take up more oxazepam than individuals exposed in groups, likely as a result of stress caused by isolation. Furthermore, the bioconcentration factor (BCF) was significantly negatively correlated with fish weight in both social treatments. We found no effect of oxazepam exposure on body cortisol concentration or behavioral stress response. Most laboratory experiments, including standardized bioconcentration assays, are designed to minimize stress for the test organisms, however wild animals experience stress naturally. Hence, differences in stress levels between laboratory and natural environments can be one of the reasons why predictions from artificial laboratory experiments largely underestimate uptake of oxazepam, and other pharmaceuticals, in the wild. (C) 2016 Elsevier B.V. All rights reserved.
机译:全球范围内的水生系统中都存在多种具有生物活性的药物残留物。由于在水生野生生物中摄取潜力和影响的风险直接相关,因此本研究的目的是研究分离,摄取引起的压力与精神药物奥沙西m对鱼类的影响之间的关系。为此,我们在暴露于(1.03 mu gl(-1))或未暴露于奥沙西m的少年鲈鱼(Percafluviatilis)中,测量了在不同压力和社会条件下皮质醇的水平,行为应激反应和奥沙西m的摄取。我们发现,单暴露的个体比分组暴露的个体吸收更多的奥沙西more,这可能是由于孤立所致的压力。此外,在两种社会治疗中,生物浓缩因子(BCF)与鱼的重量均显着负相关。我们发现奥沙西m暴露对人体皮质醇浓度或行为应激反应没有影响。大多数实验室实验,包括标准化的生物浓缩测定法,都是为了最大程度地降低测试生物的压力而设计的,但是野生动物自然会承受压力。因此,实验室和自然环境之间的压力水平差异可能是人工实验室实验预测大大低估了野生环境中奥沙西m和其他药物摄入的原因之一。 (C)2016 Elsevier B.V.保留所有权利。

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