首页> 外文期刊>Aquatic Toxicology >Selective uptake and biological consequences of environmentally relevant antidepressant pharmaceutical exposures on male fathead minnows.
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Selective uptake and biological consequences of environmentally relevant antidepressant pharmaceutical exposures on male fathead minnows.

机译:环境相关的抗抑郁药物暴露于雄性黑头min鱼的选择性吸收和生物学后果。

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Antidepressant pharmaceuticals have been reported in wastewater effluent at the nanogram to low microgram-per-liter range, and include bupropion (BUP), fluoxetine (FLX), sertraline (SER), and venlafaxine (VEN). To assess the effects of antidepressants on reproductive anatomy, physiology, and behavior, adult male fathead minnows (Pimephales promelas) were exposed for 21 days either to a single concentration of the antidepressants FLX, SER, VEN, or BUP, or to an antidepressant mixture. The data demonstrated that exposure to VEN (305 ng/L and 1104 ng/L) and SER (5.2 ng/L) resulted in mortality. Anatomical alterations were noted within the testes of fish exposed to SER and FLX, both modulators of the neurotransmitter serotonin. Additionally, FLX at 28 ng/L induced vitellogenin in male fish-a common endpoint for estrogenic endocrine disruption. Significant alterations in male secondary sex characteristics were noted with single exposures. Effects of single compound exposures neither carried over, nor became additive in the antidepressant mixtures, and reproductive behavior was not affected. Analysis of brain tissues from the exposed fish suggested increased uptake of FLX, SER and BUP and minimal uptake of VEN when compared to exposure water concentrations. Furthermore, the only metabolite detected consistently in the brain tissues was norfluoxetine. Similar trends of uptake by brain tissue were observed when fish were exposed to antidepressant mixtures. The present study demonstrates that anatomy and physiology, but not reproductive behavior, can be disrupted by exposure to environmental concentrations of some antidepressants. The observation that antidepressant uptake into fish tissues is selective may have consequences on assessing the mode-of-action and effects of these compounds in future studies.
机译:据报道,废水中的抗抑郁药物的浓度范围从纳克到每升微克不等,包括安非他酮(BUP),氟西汀(FLX),舍曲林(SER)和文拉法辛(VEN)。为了评估抗抑郁药对生殖解剖,生理和行为的影响,将成年雄性黑头fat鱼(Pimephales promelas )暴露于单一浓度的抗抑郁药FLX,SER,VEN或BUP或抗抑郁药混合物。数据表明暴露于VEN(305 ng / L和1104 ng / L)和SER(5.2 ng / L)会导致死亡。在暴露于SER和FLX的鱼的睾丸内发现了解剖学改变,这两种都是神经递质血清素的调节剂。此外,在雄性鱼类中,以28 ng / L的FLX诱导卵黄蛋白原是雌激素内分泌干扰的常见终点。男性暴露于次要性别特征的显着变化是单次暴露。单一化合物暴露的影响既不会延续,也不会在抗抑郁药混合物中增加,并且生殖行为也没有受到影响。分析暴露鱼类的脑组织表明,与暴露水中的浓度相比,FLX,SER和BUP的摄取增加,而VEN的摄取最少。此外,在脑组织中一致检测到的唯一代谢物是去甲氟西汀。当鱼暴露于抗抑郁药混合物中时,观察到脑组织摄取的类似趋势。本研究表明,暴露于某些抗抑郁药的环境浓度会破坏解剖结构和生理机能,但不会影响生殖行为。鱼组织中抗抑郁药的摄取具有选择性的观察结果可能会对未来研究中这些化合物的作用方式和作用评估产生影响。

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