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Strain-dependent differential behavioral responses of zebrafish larvae to acute MK-801 treatment

机译:斑马鱼幼虫对急性MK-801治疗的应变依赖性差异行为反应

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The zebrafish is a relatively new model organism and has become a valuable tool in genetic, developmental, and pharmacological researches. Zebrafish larvae, compared with adult, are particularly suitable for high-throughput screening of drug effects. AB and TU are well established in-bred zebrafish strains. The behavioral responses to acute MK-801 treatments (0, 5, 20, 100, and 200 mu M) under illumination at 50 lx were studied using zebrafish larvae of both AB and TV strains at 7 dpf with ZebraLab software. Two behavioral parameters, traveling distance and activity counts, were analyzed. "Traveling distance" represents locomotor activity, whereas "activity count" is any activity including small, non-ambulatory movements. Zebrafish larvae of TV strain demonstrated inhibitory effects in both behavioral parameters in response to MK-801 treatment. Zebrafish larvae of AB strain showed lack of responses to MK-801 treatments in traveling distance, and showed increases in activity counts. Therefore, zebrafish larvae of AB and TV strains demonstrated opposite responses in activity counts towards MK-801 treatment. Differences in the level of neurotransmitters and their respective metabolites (NE and MHPG, DA and DOPAC, 5-HT and 5-HIAA) between AB and TV strain zebrafish larvae were discovered by HPLC analysis, which was related to the strain-dependent differential behavioral responses to MK-801 treatment Conclusion: Under the influences of MK-801, in contrast with TV strain, AB strain zebrafish larvae demonstrated activity changes similar to previous studies on rodents. AB strain larvae are better model organisms than TV strain larvae in MK-801 related behavioral studies. (C) 2014 Elsevier Inc. All rights reserved.
机译:斑马鱼是一种相对较新的模型生物,已成为遗传,发育和药理研究中的重要工具。与成年动物相比,斑马鱼幼虫特别适合于高通量筛选药物作用。 AB和TU是成熟的近交斑马鱼菌株。使用ZebraLab软件,使用AB和TV菌株的7 dpf斑马鱼幼虫,在50 lx的光照下对急性MK-801处理(0、5、20、100和200μM)的行为响应进行了研究。分析了两个行为参数,行进距离和活动计数。 “行进距离”代表运动活动,而“活动计数”是包括小的非步行运动在内的任何活动。电视株的斑马鱼幼虫对MK-801的治疗表现出两种行为参数的抑制作用。 AB株的斑马鱼幼虫在行进距离上对MK-801处理没有反应,并且活动计数增加。因此,AB和TV株的斑马鱼幼虫在针对MK-801治疗的活性计数中显示出相反的反应。通过HPLC分析发现AB和TV株斑马鱼幼虫的神经递质及其各自代谢产物(NE和MHPG,DA和DOPAC,5-HT和5-HIAA)水平的差异,这与依赖于菌株的差异行为有关。对MK-801处理的反应结论:在MK-801的影响下,与TV菌株相比,AB菌株斑马鱼幼虫表现出的活性变化与先前对啮齿类动物的研究相似。在MK-801相关的行为研究中,AB菌株幼虫比TV菌株幼虫更好。 (C)2014 Elsevier Inc.保留所有权利。

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