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氟西汀对水生无脊椎动物生命周期的影响评估。

Fluoxetine effects assessment on the life cycle of aquatic invertebrates.

作者信息

Péry A R R, Gust M, Vollat B, Mons R, Ramil M, Fink G, Ternes T, Garric J

机构信息

Laboratoire d'écotoxicologie, Cemagref, 3b quai Chauveau 69009 Lyon, France.

出版信息

Chemosphere. 2008 Sep;73(3):300-4. doi: 10.1016/j.chemosphere.2008.06.029. Epub 2008 Jul 24.

DOI:10.1016/j.chemosphere.2008.06.029
PMID:18656226
Abstract

Fluoxetine is a serotonin re-uptake inhibitor, generally used as an antidepressant. It is suspected to provoke substantial effects in the aquatic environment. This study reports the effects of fluoxetine on the life cycle of four invertebrate species, Daphnia magna, Hyalella azteca and the snail Potamopyrgus antipodarum exposed to fluoxetine spiked-water and the midge Chironomus riparius exposed to fluoxetine-spiked sediments. For D. magna, a multi-generational study was performed with exposition of newborns from exposed organisms. Effects of fluoxetine could be found at low measured concentrations (around 10microgl(-1)), especially for parthenogenetic reproduction of D. magna and P. antipodarum. For daphnids, newborns length was impacted by fluoxetine and the second generation of exposed individuals showed much more pronounced effects than the first one, with a NOEC of 8.9microgl(-1). For P. antipodarum, significant decrease of reproduction was found for concentrations around 10microgl(-1). In contrast, we found no effect on the reproduction of H. azteca but a significant effect on growth, which resulted in a NOEC of 33microgl(-1), expressed in nominal concentration. No effect on C. riparius could be found for measured concentrations up to 59.5mgkg(-1). General mechanistic energy-based models showed poor relevance for data analysis, which suggests that fluoxetine targets specific mechanisms of reproduction.

摘要

氟西汀是一种血清素再摄取抑制剂,通常用作抗抑郁药。人们怀疑它会在水生环境中产生重大影响。本研究报告了氟西汀对四种无脊椎动物生命周期的影响,包括暴露于添加氟西汀的水中的大型溞、阿氏摇蚊和蜗牛新西兰泥蜗,以及暴露于添加氟西汀的沉积物中的摇蚊。对于大型溞,对暴露生物的新生个体进行了多代研究。在低测量浓度(约10微克/升)下就能发现氟西汀的影响,特别是对大型溞和新西兰泥蜗的孤雌生殖。对于水蚤,新生个体的长度受到氟西汀的影响,暴露个体的第二代比第一代表现出更明显的影响,无观察效应浓度为8.9微克/升。对于新西兰泥蜗,在浓度约为10微克/升时发现繁殖显著下降。相比之下,我们发现对阿氏摇蚊的繁殖没有影响,但对生长有显著影响,以标称浓度表示时无观察效应浓度为33微克/升。对于测量浓度高达59.5毫克/千克的情况,未发现对摇蚊有影响。基于能量的一般机制模型对数据分析的相关性较差,这表明氟西汀针对特定的繁殖机制。

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