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Behavioural assessments of neurotoxic effects and neurodegeneration in zebrafish.

机译:斑马鱼神经毒性作用和神经变性的行为评估。

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Altered neurological function will generally be behaviourally apparent. Many of the behavioural models pioneered in mammalian models are portable to zebrafish. Tests are available to capture alterations in basic motor function, changes associated with exteroceptive and interoceptive sensory cues, and alterations in learning and memory performance. Excepting some endpoints involving learning, behavioural tests can be carried out at 4 days post fertilization. Given larvae can be reared quickly and in large numbers, and that software solutions are readily available from multiple vendors to automatically test behavioural responses in 96 larvae simultaneously, zebrafish are a potent and rapid model for screening neurological impairments. Coupling current and emerging behavioural endpoints with molecular techniques will permit and accelerate the determination of the mechanisms behind neurotoxicity and degeneration, as well as provide numerous means to test remedial drugs and other therapies. The emphasis of this review is to highlight unexplored/underutilized behavioural assays for future studies. This article is part of a Special Issue entitled Zebrafish Models of Neurological Diseases.
机译:神经功能改变通常在行为上是显而易见的。哺乳动物模型中首创的许多行为模型可移植到斑马鱼身上。可以进行测试以捕捉基本运动功能的改变,与感受力和感知力的感觉暗示相关的改变以及学习和记忆能力的改变。除某些涉及学习的终点外,可以在受精后第4天进行行为测试。鉴于幼虫可以快速大量繁殖,并且可以从多个供应商处轻松获得软件解决方案来同时自动测试96个幼虫的行为反应,因此斑马鱼是一种有效且快速的模型,可用于筛查神经系统损伤。将当前和新兴的行为终点与分子技术相结合将允许并加快对神经毒性和变性背后机制的确定,并提供多种手段来测试补救药物和其他疗法。这篇综述的重点是突出未开发/未充分利用的行为分析,以供将来研究之用。本文是《神经疾病的斑马鱼模型》特刊的一部分。

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