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手性氟西汀暴露于成年斑马鱼的毒理学研究():对脑 5-羟色胺能系统破坏的手性选择性和性机制。

Toxicological Study on Chiral Fluoxetine Exposure to Adult Zebrafish (): Enantioselective and Sexual Mechanism on Disruption of the Brain Serotonergic System.

机构信息

Key Laboratory for Quality Improvement of Agricultural Products of Zhejiang Province, College of Agriculture and Food Science, Zhejiang A & F University, Lin'an, Hangzhou, Zhejiang 311300, China.

Collaborative Innovation Center of Green Pesticide, Zhejiang A & F University, Lin'an, Hangzhou, 311300 Zhejiang Province, China.

出版信息

Environ Sci Technol. 2021 Jun 1;55(11):7479-7490. doi: 10.1021/acs.est.1c01397. Epub 2021 May 18.

Abstract

The increasing number of people with depression worldwide has led to concerns regarding antidepressant contamination in aquatic environments, which could have the risk of negative effects on aquatic organisms. Chirality increases its toxicity potentials. Accordingly, we investigated the negative effects of racemic (rac-), R-, and S-FX at environmental levels (100 ng/L) on the brain serotonergic system in zebrafish () 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.

摘要

世界范围内抑郁症患者人数的增加,引起了人们对环境中抗抑郁药污染的担忧,这可能对水生生物产生负面影响。手性增加了其毒性潜力。因此,我们研究了环境水平(100ng/L)下的外消旋(rac-)、R-和 S-FX 对斑马鱼大脑 5-羟色胺能系统的负面影响,持续 42 天。此外,我们还测量了 FX 和 norfluoxetine(NFX)的全身浓度。我们发现 S-FX 暴露比 rac-和 R-FX 暴露更严重地破坏了大脑 5-羟色胺能系统。这种由 S-FX 引起的破坏的机制是性别特异性的,雌性斑马鱼表现出 5-羟色胺(5-HT)释放过程的破坏,而雄性斑马鱼表现出 5-HT 合成过程的破坏。此外,在斑马鱼中发生了对映体选择性富集和生物转化(R-FX 转化为 R-NFX 和 S-FX 转化为 S-NFX)。还观察到性别特异性积累,雌性体内浓度更高。我们的研究为 FX 暴露在生物相关浓度下的对映体和性别特异性效应提供了证据。更广泛地说,我们的研究表明,SSRIs 类抗抑郁药,如 FX,通过不仅影响 5-羟色胺转运体的活性部位,而且还会导致重要的转变,从而影响水生生物。

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