Burkhardt David-Samuel, Leyden Claire, Thomas Carina, Brysch Christian, Dehmelt Florian Alexander, Arrenberg Aristides B
Werner Reichardt Centre for Integrative Neuroscience and Institute for Neurobiology, University of Tuebingen, Tuebingen, Germany.
Lab Anim (NY). 2025 Feb;54(2):50-58. doi: 10.1038/s41684-024-01505-0. Epub 2025 Jan 27.
Two methods dominate the way that zebrafish larvae are euthanized after experimental procedures: anesthetic overdose and rapid cooling. Although MS-222 is easy to apply, this anesthetic takes about a minute to act and fish show aversive reactions and interindividual differences, limiting its reliability. Rapid cooling kills larvae after several hours and is not listed as an approved method in the relevant European Union directive. Electrical stunning is a promising alternative euthanasia method for zebrafish but has not yet been fully established. Here we characterize both behavioral and neurophysiological effects of electrical stunning in 4-day-old zebrafish larvae. We identified the electric field characteristics and stimulus duration (50 V/cm alternating current for 32 s) that reliably euthanizes free-swimming larvae and agarose-embedded larvae with an easy-to-implement protocol. Behavioral analysis and calcium neurophysiology show that larvae lose consciousness and stop responding to touch and visual stimuli very quickly (<1 s). Electrically stunned larvae no longer show coordinated brain activity. Their brains instead undergo a series of concerted whole-brain calcium waves over the course of many minutes before the cessation of all brain signals. Consistent with the need to implement the 3R at all stages of animal experimentation, the rapid and reliable euthanasia achieved by electrical stunning has potential for refinement of the welfare of more than 5 million zebrafish used annually in biomedical research worldwide.
在实验程序结束后,斑马鱼幼体安乐死的方法主要有两种:过量麻醉和快速降温。虽然MS-222易于使用,但这种麻醉剂起效约需一分钟,而且鱼会表现出厌恶反应和个体差异,限制了其可靠性。快速降温会在数小时后杀死幼体,且未被列入欧盟相关指令的批准方法中。电击昏是一种有前景的斑马鱼安乐死替代方法,但尚未完全确立。在此,我们描述了电击昏对4日龄斑马鱼幼体行为和神经生理的影响。我们确定了电场特征和刺激持续时间(50 V/cm交流电,持续32秒),通过一个易于实施的方案能可靠地使自由游动的幼体和琼脂糖包埋的幼体安乐死。行为分析和钙神经生理学表明,幼体很快(<1秒)就会失去意识并停止对触觉和视觉刺激作出反应。电击昏的幼体不再表现出协调的脑活动。相反,在所有脑信号停止之前的许多分钟内,它们的大脑会经历一系列协同的全脑钙波。鉴于在动物实验的各个阶段都需要实施3R原则,电击昏实现的快速且可靠的安乐死有可能改善全球每年用于生物医学研究的500多万条斑马鱼的福利。