首页> 外文期刊>Behavioural Brain Research: An International Journal >Unique and potent effects of acute ibogaine on zebrafish: The developing utility of novel aquatic models for hallucinogenic drug research.
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Unique and potent effects of acute ibogaine on zebrafish: The developing utility of novel aquatic models for hallucinogenic drug research.

机译:急性伊博加因对斑马鱼的独特而有效的作用:用于致幻药研究的新型水生模型的开发应用。

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摘要

An indole alkaloid, ibogaine is the principal psychoactive component of the iboga plant, used by indigenous peoples in West Africa for centuries. Modulating multiple neurotransmitter systems, the drug is a potent hallucinogen in humans, although its psychotropic effects remain poorly understood. Expanding the range of model species is an important strategy for translational neuroscience research. Here we exposed adult zebrafish (Danio rerio) to 10 and 20mg/L of ibogaine, testing them in the novel tank, light-dark box, open field, mirror stimulation, social preference and shoaling tests. In the novel tank test, the zebrafish natural diving response (geotaxis) was reversed by ibogaine, inducing initial top swimming followed by bottom dwelling. Ibogaine also attenuated the innate preference for dark environments (scototaxis) in the light-dark box test. While it did not exert overt locomotor or thigmotaxic responses in the open field test, the drug altered spatiotemporal exploration of novel environment, inducing clear preference of some areas over others. Ibogaine also promoted 'mirror' exploration in the mirror stimulation test, disrupted group cohesion in the shoaling test, and evoked strong coloration responses due to melanophore aggregation, but did not alter brain c-fos expression or whole-body cortisol levels. Overall, our results support the complex pharmacological profile of ibogaine and its high sensitivity in zebrafish models, dose-dependently affecting multiple behavioral domains. While future investigations in zebrafish may help elucidate the mechanisms underlying these unique behavioral effects, our study strongly supports the developing utility of aquatic models in hallucinogenic drug research. High sensitivity of three-dimensional phenotyping approaches applied here to behavioral effects of ibogaine in zebrafish provides further evidence of how 3D reconstructions of zebrafish swimming paths may be useful for high-throughput pharmacological screening.
机译:伊博加因是一种吲哚生物碱,是伊博加植物的主要精神活性成分,西非土著人民使用它已有数百年历史。该药物可调节多种神经递质系统,是人类有效的致幻剂,尽管其精神作用尚不清楚。扩大模型种类的范围是转化神经科学研究的重要策略。在这里,我们将成年斑马鱼(Danio rerio)暴露于10和20mg / L的伊博加因,在新型水箱,明暗盒,开阔视野,镜面刺激,社交偏好和浅滩测试中对其进行测试。在新颖的坦克测试中,依博加因逆转了斑马鱼的自然潜水反应(趋向性),诱导了最初的顶部游泳,然后是底部的居住。在明暗盒测试中,伊博加因还减弱了对黑暗环境(刻图)的先天偏好。尽管该药物在露天试验中未表现出明显的运动或触觉反应,但该药物改变了对新环境的时空探索,引起某些地区明显优于其他地区。伊博加因还促进了镜刺激试验中的“镜”探查,在浅滩试验中破坏了群体凝聚力,并由于黑色素聚集而引起了强烈的着色反应,但并未改变脑c-fos表达或全身皮质醇水平。总体而言,我们的结果支持依博加因的复杂药理学特征及其在斑马鱼模型中的高敏感性,剂量依赖性影响多个行为域。尽管将来对斑马鱼的研究可能有助于阐明这些独特行为效应的潜在机制,但我们的研究强烈支持水生模型在致幻药研究中的开发效用。本文对伊博加因在斑马鱼中的行为影响所采用的三维表型方法具有很高的敏感性,这进一步证明了斑马鱼游泳路径的3D重建对于高通量药理学筛选可能有用。

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