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斑马鱼对能量饮料成分的焦虑样行为和全身皮质醇反应()。

Anxiety-like behavior and whole-body cortisol responses to components of energy drinks in zebrafish ().

作者信息

Alia Alia O, Petrunich-Rutherford Maureen L

机构信息

Department of Psychology, Indiana University Northwest, Gary, IN, USA.

出版信息

PeerJ. 2019 Aug 20;7:e7546. doi: 10.7717/peerj.7546. eCollection 2019.

Abstract

The current study investigated the independent and combined effects of caffeine and taurine on anxiety-like behavior and neuroendocrine responses in adult zebrafish (). Caffeine (1,3,7-trimethylpurine-2,6-dione), the world's most commonly used psychoactive drug, acts as an adenosine receptor blocker and a mild central nervous system stimulant. However, excessive use of caffeine is associated with heightened anxiety levels. Taurine (2-aminoethanesulfonic acid), a semi-essential amino acid synthesized within the human brain, has been hypothesized to play a role in regulating anxiolytic behavior. Caffeine and taurine are two common additives in energy drinks and are often found in high concentrations in these beverages. However, few studies have investigated the interaction of these two chemicals with regards to anxiety measures. A suitable vertebrate to examine anxiety-like behavior and physiological stress responses is the zebrafish, which has shown promise due to substantial physiological and genetic homology with humans. Anxiety-like behavior in zebrafish can be determined by analyzing habituation to novelty when fish are placed into a novel tank and scototaxis (light avoidance) behavior in the light-dark test. Stress-related neuroendocrine responses can be measured in zebrafish by analyzing whole-body cortisol levels. The goal of this study was to determine if exposure to caffeine, taurine, or a combination of the two compounds altered anxiety-like behavior and whole-body cortisol levels in zebrafish relative to control. Zebrafish were individually exposed to either caffeine (100 mg/L), taurine (400 mg/L), or both for 15 min. Zebrafish in the control group were handled in the same manner but were only exposed to system tank water. After treatment, fish were transferred to the novel tank test or the light-dark test. Behavior was tracked for the first 6 min in the novel tank and 15 min in the light-tark test. Fifteen min after introduction to the behavioral task, fish were euthanized for the analysis of whole-body cortisol levels. The results demonstrate that caffeine treatment decreased the amount of exploration in the top of the novel tank and increased scototaxis behavior in the light-dark test, which supports the established anxiogenic effect of acute exposure to caffeine. Taurine alone did not alter basal levels of anxiety-like behavioral responses nor ameliorated the anxiogenic effects of caffeine on behavior when the two compounds were administered concurrently. None of the drug treatments altered basal levels of whole-body cortisol. The current results of this study suggest that, at least at this dose and time of exposure, taurine does not mitigate the anxiety-producing effects of caffeine when administered in combination, such as with energy drink consumption.

摘要

本研究调查了咖啡因和牛磺酸对成年斑马鱼焦虑样行为和神经内分泌反应的独立及联合作用()。咖啡因(1,3,7 - 三甲基嘌呤 - 2,6 - 二酮)是世界上最常用的精神活性药物,它作为腺苷受体阻滞剂和轻度中枢神经系统兴奋剂。然而,过量使用咖啡因与焦虑水平升高有关。牛磺酸(2 - 氨基乙磺酸)是一种在人脑中合成的半必需氨基酸,据推测它在调节抗焦虑行为中发挥作用。咖啡因和牛磺酸是能量饮料中的两种常见添加剂,并且在这些饮料中经常以高浓度存在。然而,很少有研究调查这两种化学物质在焦虑测量方面的相互作用。斑马鱼是一种适合用于研究焦虑样行为和生理应激反应的脊椎动物,由于其与人类在生理和基因上具有高度同源性,已显示出研究前景。斑马鱼的焦虑样行为可以通过分析将鱼放入新水箱时对新环境的适应情况以及明暗试验中的避光行为来确定。与应激相关的神经内分泌反应可以通过分析斑马鱼全身皮质醇水平来测量。本研究的目的是确定暴露于咖啡因、牛磺酸或这两种化合物的组合是否会相对于对照组改变斑马鱼的焦虑样行为和全身皮质醇水平。将斑马鱼分别单独暴露于咖啡因(100毫克/升)、牛磺酸(400毫克/升)或两者中15分钟。对照组的斑马鱼以相同方式处理,但仅暴露于系统水箱水中。处理后,将鱼转移到新水箱试验或明暗试验中。在新水箱中对行为进行前6分钟的跟踪,在明暗试验中进行15分钟的跟踪。在引入行为任务15分钟后,对鱼实施安乐死以分析全身皮质醇水平。结果表明,咖啡因处理减少了斑马鱼在新水箱上部的探索量,并增加了明暗试验中的避光行为,这支持了急性暴露于咖啡因所确立的致焦虑作用。单独使用牛磺酸既未改变焦虑样行为反应的基础水平,当同时给予这两种化合物时,也未改善咖啡因对行为的致焦虑作用。没有一种药物处理改变全身皮质醇的基础水平。本研究目前的结果表明,至少在该剂量和暴露时间下,牛磺酸与咖啡因联合使用时(如与饮用能量饮料时),不会减轻咖啡因产生焦虑的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dd1/6707341/e0795cb2f463/peerj-07-7546-g001.jpg

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