Department of Psychology, University of Toronto at Mississauga, 3359 Mississauga Road, Mississauga, Ontario, Canada.
Behav Brain Res. 2011 Jul 7;220(2):331-7. doi: 10.1016/j.bbr.2011.02.019. Epub 2011 Feb 17.
MK-801, a non-competitive NMDA-R antagonist, has been utilized in the analysis of mammalian learning and memory. The zebrafish is a novel vertebrate study species that has been proposed for the analysis of the mechanisms of learning and memory. Although learning paradigms have been developed for this species, psychopharmacological characterization of its behavioral responses is rudimentary. Before one attempts the analysis of the effects of MK-801 on learning and memory in zebrafish, one needs to know whether this drug affects motor function, perception and/or motivation, factors that may influence performance in learning tasks. Here we conduct dose response analyses investigating the effects of 0, 2, 20 and 100 μM MK-801 administered 24h or 30 min before the behavioral test, or during the test. We analyze responses in the open tank to measure motor and posture patterns, in the light dark paradigm to evaluate visual perception, and in a group preference task to attempt to quantify motivation. Our results show a significant performance alteration only in the highest (100 μM) dose groups. These fish spent more time on the bottom of their tank, showed elevated Erratic movement, increased their clockwise and counterclockwise turning frequency, and reduced the time spent near a shoal stimulus, behavioral alterations that also depended upon the timing of drug administration. Thus, using the current delivery procedures and outbred zebrafish population, the highest dose that may not lead to significant performance deficits is 20 μM, a concentration we propose to use in a future learning study in zebrafish.
MK-801 是非竞争性 NMDA-R 拮抗剂,已被用于分析哺乳动物的学习和记忆。斑马鱼是一种新型的脊椎动物研究物种,已被提议用于分析学习和记忆的机制。尽管已经为这种物种开发了学习范式,但对其行为反应的精神药理学特征的研究还很初步。在分析 MK-801 对斑马鱼学习和记忆的影响之前,需要知道这种药物是否会影响运动功能、感知和/或动机,这些因素可能会影响学习任务的表现。在这里,我们进行了剂量反应分析,研究了在行为测试前 24 小时或 30 分钟或测试期间给予 0、2、20 和 100 μM MK-801 的影响。我们分析了在开放式水箱中的反应,以测量运动和姿势模式,在明暗范式中评估视觉感知,并在群体偏好任务中尝试量化动机。我们的结果显示,只有在最高(100 μM)剂量组中才会出现显著的性能改变。这些鱼在水箱底部停留的时间更长,表现出更多的不稳定运动,增加了顺时针和逆时针转动的频率,并减少了在鱼群刺激附近停留的时间,这些行为改变也取决于药物给药的时间。因此,使用当前的给药程序和杂交斑马鱼群体,不会导致明显表现缺陷的最高剂量可能是 20 μM,我们建议在未来的斑马鱼学习研究中使用该浓度。