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早期文拉法辛暴露对斑马鱼的性别特异性及长期影响

Sex-Specific and Long-Term Impacts of Early-Life Venlafaxine Exposure in Zebrafish.

作者信息

Thompson William Andrew, Shvartsburd Zachary, Vijayan Mathilakath M

机构信息

Department of Biological Sciences, University of Calgary, Calgary, AB T2N 1N4, Canada.

出版信息

Biology (Basel). 2022 Feb 6;11(2):250. doi: 10.3390/biology11020250.

Abstract

Venlafaxine, a selective serotonin and norepinephrine reuptake inhibitor, is a widely prescribed antidepressant that is detected in municipal wastewater effluents at µg/L concentrations. It has been shown to impact the early life stages of fish, including neurodevelopment and behaviour in larvae, but whether such early exposures have longer-term consequences are far from clear. Here, we sought to determine whether zygotic deposition of venlafaxine, mimicking a maternal transfer scenario, disturbs the metabolic rate and behavioural performance using zebrafish (). This was tested using freshly fertilized embryos (1-4 cell stage) microinjected with either 0, 1 or 10 ng of venlafaxine and raised to either juvenile (60 days post-fertilization) or adult (10-12 months post-fertilization). Zygotic venlafaxine exposure led to a reduction in the active metabolic rate and aerobic scope, but this was only observed in female fish. On the other hand, the total distance travelled in an open field assessment was greater at the highest concentration of venlafaxine only in the adult males. At the juvenile stage, behavioural assessments demonstrated that venlafaxine exposure may increase boldness-including hyperactivity, lower thigmotaxis, and a reduction in the distance to a novel object. Taken together, these results demonstrate that zygotic venlafaxine exposure may impact developmental programming in a sex-specific manner in fish.

摘要

文拉法辛是一种选择性5-羟色胺和去甲肾上腺素再摄取抑制剂,是一种广泛应用的抗抑郁药,在城市污水排放中可检测到微克/升浓度的该药物。研究表明,它会影响鱼类的早期生命阶段,包括幼体的神经发育和行为,但这种早期暴露是否会产生长期后果尚不清楚。在此,我们试图确定模拟母体转移情况的文拉法辛合子沉积是否会影响斑马鱼的代谢率和行为表现。我们使用刚受精的胚胎(1-4细胞期)进行了测试,这些胚胎被显微注射了0、1或10纳克的文拉法辛,并饲养至幼鱼期(受精后60天)或成年期(受精后10-12个月)。合子期暴露于文拉法辛会导致活性代谢率和有氧代谢范围降低,但这仅在雌鱼中观察到。另一方面,仅在成年雄鱼中,在文拉法辛最高浓度下的旷场评估中总游动距离更长。在幼鱼阶段,行为评估表明,暴露于文拉法辛可能会增加大胆程度,包括多动、较低的趋触性以及与新物体距离的缩短。综上所述,这些结果表明,合子期暴露于文拉法辛可能会以性别特异性方式影响鱼类的发育编程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46fd/8869491/e2e7eece32d3/biology-11-00250-g001.jpg

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