Suok(“走绳”)老鼠焦虑测试

Allan V. Kalueff, Pentti Tuohimaa
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引用次数: 30

摘要

在本研究中,我们建议长水平杆(Suok试验,ST)及其光暗修饰(LDST)可用于小鼠的行为表征,包括同时评估它们的焦虑、活动和神经表型。为了建立ST和LDST作为小鼠焦虑模型,我们使用了几种不同的小鼠品系(C57BL/6、129S1/SvImJ、NMRI和BALB/c),这些品系在焦虑和活动方面存在显著差异。在这里,我们表明我们的测试能够在行为学上区分高焦虑和低焦虑的小鼠品系,通过水平和定向探索,停止和排便肠来评估。LDST行为的空间分布也对这些品系特异性焦虑表型敏感,应激(暴露大鼠)与对照NMRI小鼠明显回避测试的明亮部分。此外,我们通过评估急性应激(如大鼠暴露)的行为后果,在129S1/SvImJ和BALB/c小鼠中验证了ST。最后,我们发现我们的测试能够检测129S1/SvImJ小鼠(vs. C57BL/6)的高度焦虑和较差的运动协调。我们的研究结果表明,ST可以作为一种实验工具来分析小鼠的焦虑、运动前庭异常以及焦虑引起的运动损伤。总之,我们认为ST可以成为神经行为应激研究的有用方案,包括模拟应激诱发状态,潜在抗应激药物的药理筛选或转基因动物的行为表型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Suok (“ropewalking”) murine test of anxiety

In the present study, we suggest that long elevated horizontal rod (Suok test, ST) and its light–dark modification (LDST) may be used for behavioral characterization in mice, including simultaneous assessment of their anxiety, activity, and neurological phenotypes. To establish the ST and the LDST as murine models of anxiety, we used several different mouse strains which differ markedly in their anxiety and activity (C57BL/6, 129S1/SvImJ, NMRI, and BALB/c). Here we show that our tests are able to ethologically discriminate between high and low anxiety mouse strains, as assessed by horizontal and directed exploration, stops, and defecation boli. The spatial distribution of the LDST behaviors is also sensitive to these strain-specific anxiety phenotypes, showing clear avoidance of the brightly lit part of the test in stressed (rat exposed) vs. control NMRI mice. In addition, we validated the ST in 129S1/SvImJ and BALB/c mice by assessing the behavioral consequences of acute stress such as rat exposure. Finally, we showed that our test is able to detect high anxiety and poorer motor coordination in 129S1/SvImJ (vs. C57BL/6) mice. The results of our study show that the ST emerges as an experimental tool to analyze anxiety, motor-vestibular anomalies, as well as anxiety-induced motor impairments in mice. Overall, we suggest that the ST can be a useful protocol in neurobehavioral stress research including modeling stress-evoked states, pharmacological screening of potential anti-stress drugs, or behavioral phenotyping of genetically modified animals.

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