咖啡因诱发的斑马鱼性别特异性焦虑行为和生理反应

IF 2.6 3区 心理学 Q2 BEHAVIORAL SCIENCES Behavioural Brain Research Pub Date : 2024-07-15 DOI:10.1016/j.bbr.2024.115151
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引用次数: 0

摘要

咖啡因对斑马鱼的行为有双相影响。高剂量的咖啡因会增加压力和焦虑,而低剂量的咖啡因则会提高斑马鱼在需要集中注意力的任务中的表现。然而,这些对行为和生理的双相效应的性别特异性仍不清楚。本研究评估了雌雄斑马鱼在急性暴露于 0.3 至 600 毫克/升咖啡因后的行为反应和激素水平。结果显示,雌雄斑马鱼在急性暴露于各种浓度的咖啡因后,其咖啡因摄入量无明显差异。咖啡因诱导的行为和生理反应表明,阈值剂量存在于 30 至 300 毫克/升之间。在急性暴露于高剂量处理后,雌鱼表现出更多类似焦虑的行为表型,即上浮潜伏期和冻结,而雄鱼则表现出更多不稳定的运动。此外,雌鱼的全身皮质醇水平显著升高,而雄鱼在急性接触 300 毫克/升咖啡因后睾酮水平升高。与对照组相比,接受雄激素受体拮抗剂氟他胺治疗的男性出现不规则运动的持续时间明显缩短。转录组分析发现,与对照组相比,男性和女性中分别有511个和592个上调基因以及761个和922个下调基因。京都基因与基因组百科全书(KEGG)和基因本体(GO)通路分析表明,咖啡因有可能影响斑马鱼的各种通路,包括光传导和类固醇激素的生物合成。我们的研究结果表明,睾酮和皮质醇在调节行为和生理方面的应激反应中共同发挥作用。此外,我们的研究还强调了将雌雄斑马鱼作为模型系统的重要性。
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Zebrafish gender-specific anxiety-like behavioral and physiological reactions elicited by caffeine

Caffeine exerts a biphasic effect on zebrafish behavior. High doses of caffeine have been associated with increased stress and anxiety, whereas low doses have been found to enhance performance on tasks requiring focus and attention. However, the sex-specific nature of these biphasic effects on behavior and physiology remains unclear. This study assessed the behavioral responses and hormone levels in male and female zebrafish after acute exposure to caffeine ranging from 0.3 to 600 mg/L. The results showed no significant difference in caffeine intake between males and females after acute exposure at each concentration. Caffeine-induced behavioral and physiological responses indicated a threshold dosage existed between 30 and 300 mg/L. Female fish displayed increased anxiety-like behavioral phenotypes, i.e., latency to upper and freezing, whereas males exhibited more erratic movement following acute exposure to a high-dose treatment. In addition, females exhibited a significant increase in whole-body cortisol levels, while males experienced a testosterone elevation at 300 mg/L of caffeine acute exposure. There was a significant decrease in the duration of erratic movements in males treated with the androgen receptor antagonist flutamide compared to the control group. The transcriptome analysis uncovered 511 and 592 up-regulated and 761 and 922 down-regulated differential expression genes in males and females, respectively, compared to the control. The Kyoto Encyclopedia of Genes and Genomes (KEGG) and Gene Ontology (GO) pathway analysis revealed that caffeine has the potential to impact various pathways in zebrafish, including phototransduction and steroid hormone biosynthesis. Our findings demonstrate that testosterone and cortisol play a combined role in regulating stress responses in both behavior and physiology. Furthermore, our study highlights the significance of encompassing both male and female zebrafish as a model system.

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来源期刊
Behavioural Brain Research
Behavioural Brain Research 医学-行为科学
CiteScore
5.60
自引率
0.00%
发文量
383
审稿时长
61 days
期刊介绍: Behavioural Brain Research is an international, interdisciplinary journal dedicated to the publication of articles in the field of behavioural neuroscience, broadly defined. Contributions from the entire range of disciplines that comprise the neurosciences, behavioural sciences or cognitive sciences are appropriate, as long as the goal is to delineate the neural mechanisms underlying behaviour. Thus, studies may range from neurophysiological, neuroanatomical, neurochemical or neuropharmacological analysis of brain-behaviour relations, including the use of molecular genetic or behavioural genetic approaches, to studies that involve the use of brain imaging techniques, to neuroethological studies. Reports of original research, of major methodological advances, or of novel conceptual approaches are all encouraged. The journal will also consider critical reviews on selected topics.
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