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抗抑郁药氟西汀诱导雄性斑马鱼跨代低皮质醇和行为障碍。

Transgenerational hypocortisolism and behavioral disruption are induced by the antidepressant fluoxetine in male zebrafish .

机构信息

Department of Biology, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

Centre for Advanced Research in Environmental Genomics, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

出版信息

Proc Natl Acad Sci U S A. 2018 Dec 26;115(52):E12435-E12442. doi: 10.1073/pnas.1811695115. Epub 2018 Dec 10.

Abstract

The global prevalence of depression is high during childbearing. Due to the associated risks to the mother and baby, the selective serotonin reuptake inhibitor fluoxetine (FLX) is often the first line of treatment. Given that FLX readily crosses the placenta, a fetus may be susceptible to the disruptive effects of FLX during this highly plastic stage of development. Here, we demonstrate that a 6-day FLX exposure to a fetus-relevant concentration at a critical developmental stage suppresses cortisol levels in the adult zebrafish (F). This effect persists for three consecutive generations in the unexposed descendants (F to F) without diminution and is more pronounced in males. We also show that the in vivo cortisol response of the interrenal (fish "adrenal") to an i.p. injection of adrenocorticotropic hormone was also reduced in the males from the F and F FLX lineages. Transcriptomic profiling of the whole kidney containing the interrenal cells revealed that early FLX exposure significantly modified numerous pathways closely associated with cortisol synthesis in the male adults from the F and F generations. We also show that the low cortisol levels are linked to significantly reduced exploratory behaviors in adult males from the F to F FLX lineages. This may be a cause for concern given the high prescription rates of FLX to pregnant women and the potential long-term negative impacts on humans exposed to these therapeutic drugs.

摘要

在生育期,全球范围内抑郁症的患病率很高。由于对母亲和婴儿存在风险,选择性 5-羟色胺再摄取抑制剂氟西汀(FLX)通常是一线治疗药物。鉴于 FLX 很容易穿过胎盘,胎儿在发育的这个高度活跃阶段可能容易受到 FLX 的破坏性影响。在这里,我们证明了在关键发育阶段,胎儿相关浓度的 FLX 暴露会抑制成年斑马鱼(F)的皮质醇水平。这种影响在未暴露的后代(F 到 F)中持续三代而没有减弱,并且在雄性中更为明显。我们还表明,来自 F 和 F FLX 系的雄性的肾间组织(鱼类“肾上腺”)对腹腔内注射促肾上腺皮质激素的体内皮质醇反应也降低了。对包含肾间细胞的整个肾脏进行的转录组分析表明,早期 FLX 暴露会显著改变与 F 和 F 两代雄性成年动物皮质醇合成密切相关的许多途径。我们还表明,F 到 F FLX 系的雄性的低皮质醇水平与探索行为显著减少有关。鉴于氟西汀在孕妇中的高处方率以及接触这些治疗药物的人可能产生长期的负面影响,这可能令人担忧。

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