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Behavioral profiling of zebrafish embryos exposed to a panel of 60 water-soluble compounds

机译:暴露于60种水溶性化合物中的斑马鱼胚胎的行为特征

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The zebrafish is a powerful whole animal model which is complementary to in vitro and mammalian models. It has been shown to be applicable to the high-throughput behavioral screening of compound libraries. We have analysed 60 water-soluble toxic compounds covering a range of common drugs, toxins and chemicals, and representing various pharmacological mechanisms. Wild-type zebrafish larvae were cultured individually in defined buffer in 96 well plates. They were exposed for a 96h period starting at 24h post fertilization (hpf). A logarithmic concentration series was used for range-finding, followed by a narrower geometric series for LC 50 determination. LC 50 values were determined at 24h intervals and behavioral testing was carried out on day 5. We used the visual motor response test, in which movement of individual larvae was analysed using automated video-tracking. For all compounds, LC 50 values were found to decrease as the embryo developed. The majority of compounds (57/60) produced an effect in both the basal (lights on) and challenge phases (lights off) of the behavioral assay. These effects were either (i) suppression of locomotor activity (monotonic concentration-response); (ii) stimulation then suppression (biphasic response); (iii) stimulation (monotonic response). We conclude that behavioral assays with zebrafish embryos could be useful for pharmaceutical efficacy and toxicity screening. The precise phenotypic outcome obtained with behavioral assay varies with compound class.
机译:斑马鱼是功能强大的完整动物模型,可与体外和哺乳动物模型互补。它已显示适用于化合物库的高通量行为筛选。我们已经分析了60种水溶性有毒化合物,涵盖了一系列常见药物,毒素和化学物质,并代表了各种药理机制。将野生型斑马鱼幼虫分别在96孔板的规定缓冲液中培养。从受精(hpf)后24小时开始,将其暴露96小时。使用对数浓度级数进行范围查找,然后使用较窄的几何级数进行LC 50测定。每隔24小时测定一次LC 50值,并在第5天进行行为测试。我们使用了视觉运动反应测试,其中使用自动视频跟踪分析了各个幼虫的运动。对于所有化合物,发现LC 50值随着胚胎发育而降低。大多数化合物(57/60)在行为分析的基础阶段(亮起)和激发阶段(熄灭)均产生作用。这些影响是:(i)抑制运动活动(单调浓度反应); (ii)刺激然后抑制(双相反应); (iii)刺激(单调反应)。我们得出的结论是,用斑马鱼胚胎进行的行为分析可能对药物功效和毒性筛选有用。通过行为分析获得的精确表型结果因化合物类别而异。

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