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暴露于两种抗抑郁药氟西汀和舍曲林后,片脚类动物 Echinogammarus marinus 的行为和转录变化。

Behavioural and transcriptional changes in the amphipod Echinogammarus marinus exposed to two antidepressants, fluoxetine and sertraline.

机构信息

Institute of Marine Sciences, School of Biological Sciences, University of Portsmouth, Ferry Road, Portsmouth, Hampshire PO4 9LY, UK.

Higher Education Academy Psychology, Department of Psychology, University of Portsmouth, Hampshire PO1 2DY, UK.

出版信息

Aquat Toxicol. 2014 Jun;151:46-56. doi: 10.1016/j.aquatox.2013.11.025. Epub 2013 Dec 12.

Abstract

In the past decade, there have been increasing concerns over the effects of pharmaceutical compounds in the aquatic environment, however very little is known about the effects of antidepressants such as the selective serotonin re-uptake inhibitors (SSRIs). Many biological functions within invertebrates are under the control of serotonin, such as reproduction, metabolism, moulting and behaviour. The effects of serotonin and fluoxetine have recently been shown to alter the behaviour of the marine amphipod, Echinogammarus marinus (Leach, 1815). The purpose of this study was to observe behavioural and transcriptional modifications in this crustacean exposed to the two most prescribed SSRIs (fluoxetine and sertraline) and to develop biomarkers of neurological endocrine disruption. The animals were exposed to both drugs at environmentally relevant concentrations from 0.001 to 1μg/L during short-term (1h and 1day) and medium-term (8 days) experiments. The movement of the amphipods was tracked using the behavioural analysis software during 12min alternating dark/light conditions. The behavioural analysis revealed a significant effect on velocity which was observed after 1h exposure to sertraline at 0.01μg/L and after 1 day exposure to fluoxetine as low as 0.001μg/L. The most predominant effect of drugs on velocity was recorded after 1 day exposure for the 0.1 and 0.01μg/L concentrations of fluoxetine and sertraline, respectively. Subsequently, the expression (in this article gene expression is taken to represent only transcription, although it is acknowledged that gene expression can also be regulated at translation, mRNA and protein stability levels) of several E. marinus neurological genes, potentially involved in the serotonin metabolic pathway or behaviour regulation, were analysed in animals exposed to various SSRIs concentrations using RT-qPCR. The expression of a tryptophan hydroxylase (Ph), a neurocan core protein (Neuc), a Rhodopsin (Rhod1) and an Arrestin (Arr) were measured following exposure to fluoxetine or sertraline for 8 days. The levels of Neuc, Rhod1 and Arr were significantly down-regulated to approximately 0.5-, 0.29- and 0.46-fold, respectively, for the lower concentrations of fluoxetine suggesting potential changes in the phototransduction pathway. The expression of Rhod1 tended to be up-regulated for the lower concentration of sertraline but not significantly. In summary, fluoxetine and sertraline have a significant impact on the behaviour and neurophysiology of this amphipod at environmentally relevant concentrations with effects observed after relatively short periods of time.

摘要

在过去的十年中,人们越来越关注药物化合物对水生环境的影响,但对于选择性 5-羟色胺再摄取抑制剂(SSRIs)等抗抑郁药的影响知之甚少。许多无脊椎动物的生物学功能都受到 5-羟色胺的控制,例如繁殖、代谢、蜕皮和行为。最近的研究表明,5-羟色胺和氟西汀会改变海洋片脚类动物 Echinogammarus marinus(Leach,1815)的行为。本研究的目的是观察这种甲壳类动物在暴露于两种最常开的 SSRIs(氟西汀和舍曲林)时的行为和转录修饰,并开发神经内分泌干扰的生物标志物。在短期(1 小时和 1 天)和中期(8 天)实验中,动物在环境相关浓度下(0.001 至 1μg/L)接触两种药物。在 12 分钟的明暗交替条件下,使用行为分析软件跟踪片脚类动物的运动。行为分析显示,在 0.01μg/L 的舍曲林暴露 1 小时后,以及在 0.001μg/L 的氟西汀暴露 1 天后,速度都出现了显著的影响。在氟西汀和舍曲林的 0.1 和 0.01μg/L 浓度下,药物对速度的最主要影响是在 1 天暴露后记录到的。随后,使用 RT-qPCR 分析了暴露于各种 SSRIs 浓度下的几种 E. marinus 神经基因的表达(在本文中,基因表达仅代表转录,尽管已知基因表达也可以在翻译、mRNA 和蛋白质稳定性水平上受到调节)。在暴露于氟西汀或舍曲林 8 天后,测量了色氨酸羟化酶(Ph)、神经粘蛋白核心蛋白(Neuc)、视蛋白(Rhod1)和抑制蛋白(Arr)的表达。对于较低浓度的氟西汀,Neuc、Rhod1 和 Arr 的水平分别显著下调至约 0.5、0.29 和 0.46 倍,表明光转导途径可能发生变化。对于较低浓度的舍曲林,Rhod1 的表达趋于上调,但没有显著变化。总之,氟西汀和舍曲林在环境相关浓度下对这种片脚类动物的行为和神经生理学有显著影响,在相对较短的时间内就观察到了影响。

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