成年斑马鱼麻醉:不同麻醉药的疗效和行为恢复研究。

IF 1.4 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY
Zebrafish Pub Date : 2021-10-01 Epub Date: 2021-07-26 DOI:10.1089/zeb.2021.0023
Sara Jorge, Jorge M Ferreira, I Anna S Olsson, Ana M Valentim
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引用次数: 4

摘要

在斑马鱼研究中使用适当的麻醉对于确保鱼类福利和数据可靠性至关重要。然而,麻醉的长期副作用仍然知之甚少。本研究的目的是评估使用不同麻醉方案的成年斑马鱼的麻醉质量和恢复情况,并确定麻醉后对鱼类活动和焦虑样行为可能产生的长期影响。将雌雄混合的AB型成年斑马鱼随机分为5组(对照组、175 mg/L的甲磺酸三卡因[MS222]、45 mg/L的丁香油、2 mg/L的依托咪酯、5 mg/L的异丙酚联合150 mg/L的利多卡因),分别置于麻醉液中。评估失去平衡的时间,对触摸和尾鳍捏刺激的反应以及麻醉后的恢复情况。此外,在停止麻醉后,研究呼吸频率、活动和焦虑样行为。总的来说,所有的方案都证明了斑马鱼麻醉研究是足够的,因为它们在1小时内完全恢复,只有依托咪酯对新鱼缸中的鱼的行为有轻微的影响,这是一项经过验证的焦虑测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adult Zebrafish Anesthesia: A Study of Efficacy and Behavioral Recovery of Different Anesthetics.

The use of proper anesthesia in zebrafish research is essential to ensure fish welfare and data reliability. However, anesthesia long-term side effects remain poorly understood. The purpose of this study was to assess anesthesia quality and recovery in adult zebrafish using different anesthetic protocols and to determine possible long-term effects on the fish activity and anxiety-like behaviors after anesthesia. Mixed-sex adult AB zebrafish were randomly assigned to five different groups (Control, 175 mg/L of tricaine methanesulfonate [MS222], 45 mg/L of clove oil, 2 mg/L of etomidate, and 5 mg/L of propofol combined with 150 mg/L of lidocaine) and placed in the respective anesthetic bath. Time to lose the equilibrium, response to touch and to caudal fin pinch stimuli, and recovery after anesthesia administration were evaluated. In addition, after stopping anesthesia, respiratory rate, activity, and anxiety-like behaviors in the novel tank test were studied. Overall, all protocols proved to be adequate for zebrafish anesthesia research as they showed full recovery at 1 h, and only etomidate had minor effects on fish behavior in the novel tank, a validated test for anxiety.

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来源期刊
Zebrafish
Zebrafish DEVELOPMENTAL BIOLOGY-ZOOLOGY
CiteScore
3.60
自引率
5.00%
发文量
29
审稿时长
3 months
期刊介绍: Zebrafish is the only peer-reviewed journal dedicated to the central role of zebrafish and other aquarium species as models for the study of vertebrate development, evolution, toxicology, and human disease. Due to its prolific reproduction and the external development of the transparent embryo, the zebrafish is a prime model for genetic and developmental studies. While genetically more distant from humans, the vertebrate zebrafish nevertheless has comparable organs and tissues, such as heart, kidney, pancreas, bones, and cartilage. Zebrafish introduced the new section TechnoFish, which highlights these innovations for the general zebrafish community. TechnoFish features two types of articles: TechnoFish Previews: Important, generally useful technical advances or valuable transgenic lines TechnoFish Methods: Brief descriptions of new methods, reagents, or transgenic lines that will be of widespread use in the zebrafish community Zebrafish coverage includes: Comparative genomics and evolution Molecular/cellular mechanisms of cell growth Genetic analysis of embryogenesis and disease Toxicological and infectious disease models Models for neurological disorders and aging New methods, tools, and experimental approaches Zebrafish also includes research with other aquarium species such as medaka, Fugu, and Xiphophorus.
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