斑马鱼
达尼奥
5-羟色胺能
血清素
化学
药理学
抗抑郁药
对映体
毒性
氟西汀
再摄取抑制剂
生物
内分泌学
生物化学
立体化学
海马体
受体
有机化学
基因
作者
Feng Cui,Yunlong Zhu,Shanshan Di,Xinquan Wang,Yiming Zhang,Tingting Chai
标识
DOI:10.1021/acs.est.1c01397
摘要
) for 42 days. Additionally, we measured the whole-body concentrations of FX and norfluoxetine (NFX). We found that S-FX exposure disrupted the brain serotonergic system more severely than rac- and R-FX exposure. The mechanism underlying this disruption induced by S-FX was sex-specific, with female zebrafish showing disruption of the serotonin (5-HT) release process but male zebrafish showing disruption of the 5-HT synthesis process. In addition, enantioselective enrichment and biotransformation (R-FX to R-NFX and S-FX to S-NFX) occurred in zebrafish. Sex-specific accumulation was also observed, with higher concentrations in females. Our study provides evidence for enantiomer- and sex-specific effects of FX exposure at biologically relevant concentrations. More broadly, our study demonstrated that SSRI antidepressants, such as FX, can affect aquatic life by causing important shifts in not only their active sites of the serotonin transporter.
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