Ohnesorge Nils, Heinl Céline, Lewejohann Lars
German Federal Institute for Risk Assessment (BfR), German Centre for the Protection of Laboratory Animals (Bf3R), Berlin, Germany.
Institute of Animal Welfare, Animal Behavior and Laboratory Animal Science, Freie Universität Berlin, Berlin, Germany.
Front Neurosci. 2021 Apr 8;15:632634. doi: 10.3389/fnins.2021.632634. eCollection 2021.
Pain is an unpleasant, negative emotion and its debilitating effects are complex to manage. Mammalian models have long dominated research on nociception and pain, but there is increasing evidence for comparable processes in fish. The need to improve existing pain models for drug research and the obligation for 3R refinement of fish procedures facilitated the development of numerous new assays of nociception and pain in fish. The zebrafish is already a well-established animal model in many other research areas like toxicity testing, as model for diseases or regeneration and has great potential in pain research, too. Methods of electrophysiology, molecular biology, analysis of reflexive or non-reflexive behavior and fluorescent imaging are routinely applied but it is the combination of these tools what makes the zebrafish model so powerful. Simultaneously, observing complex behavior in free-swimming larvae, as well as their neuronal activity at the cellular level, opens new avenues for pain research. This review aims to supply a toolbox for researchers by summarizing current methods to study nociception and pain in zebrafish. We identify treatments with the best algogenic potential, be it chemical, thermal or electric stimuli and discuss options of analgesia to counter effects of nociception and pain by opioids, non-steroidal anti-inflammatory drugs (NSAIDs) or local anesthetics. In addition, we critically evaluate these practices, identify gaps of knowledge and outline potential future developments.
疼痛是一种令人不快的负面情绪,其使人衰弱的影响难以处理。长期以来,哺乳动物模型一直主导着伤害感受和疼痛的研究,但越来越多的证据表明鱼类中存在类似的过程。改进现有用于药物研究的疼痛模型的需求以及对鱼类实验进行3R优化的义务促进了众多新的鱼类伤害感受和疼痛检测方法的发展。斑马鱼在许多其他研究领域,如毒性测试、疾病或再生模型等方面已经是一种成熟的动物模型,在疼痛研究中也具有巨大潜力。电生理学、分子生物学、反射或非反射行为分析以及荧光成像等方法经常被应用,但正是这些工具的组合使斑马鱼模型如此强大。同时,观察自由游动幼虫的复杂行为及其细胞水平的神经元活动,为疼痛研究开辟了新途径。这篇综述旨在通过总结目前研究斑马鱼伤害感受和疼痛的方法,为研究人员提供一个工具箱。我们确定了具有最佳致痛潜力的刺激方式,无论是化学、热或电刺激,并讨论了通过阿片类药物、非甾体抗炎药(NSAIDs)或局部麻醉药来对抗伤害感受和疼痛影响的镇痛选择。此外,我们对这些做法进行了批判性评估,找出知识空白,并概述了潜在的未来发展方向。