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A colour preference technique to evaluate acrylamide-induced toxicity in zebrafish

机译:在斑马鱼中评估丙烯酰胺诱导的毒性的颜色偏好技术

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摘要

The zebrafish has become a commonly used vertebrate model for toxicity assessment, of particular relevance to the study of toxic effects on the visual system because of the structural similarities shared by zebrafish and human retinae. In this article we present a colour preference-based technique that, by assessing the functionality of photoreceptors, can be used to evaluate the effects of toxicity on behaviour. A digital camera was used to record the locomotor behaviour of individual zebrafish swimming in a water tank consisting of two compartments separated by an opaque perforated wall through which the fish could pass. The colour of the lighting in each compartment could be altered independently (producing distinct but connected environments of white, red or blue) to allow association of the zebrafish's swimming behaviour with its colour preference. The functionality of the photoreceptors was evaluated based on the ability of the zebrafish to sense the different colours and to swim between the compartments. The zebrafish tracking was carried out using our algorithm developed with MATLAB. We found that zebrafish preferred blue illumination to white, and white illumination to red. Acute treatment with acrylamide (2 mM for 36 h) resulted in a marked reduction in locomotion and a concomitant loss of colour-preferential swimming behaviour. Histopathological examination of acrylamide-treated zebrafish eyes showed that acrylamide exposure had caused retinal damage. The colour preference tracking technique has applications in the assessment of neurodegenerative disorders, as a method for preclinical appraisal of drug efficacy and for behavioural evaluation of toxicity. (C) 2017 Elsevier Inc. All rights reserved.
机译:斑马鱼已成为毒性评估的常用脊椎动物模型,与斑马鱼和人类视网膜共享的结构相似度,与视觉系统的毒性影响的研究特别相关。在本文中,我们提出了一种基于颜色的偏好的技术,通过评估光感受器的功能,可用于评估毒性对行为的影响。数码相机用于记录在水箱中的单个斑马鱼游泳的运动行为,包括由不透明的穿孔壁分开的两个隔室,通过该隔室通过该墙体通过该隔离器。每个隔室中的照明的颜色可以独立改变(产生白色,红色或蓝色的独特但连接的环境),以允许斑马鱼的游泳行为与其颜色偏好协会。根据斑马鱼感知不同颜色并在隔间之间游泳的能力来评估感光体的功能。使用我们的算法使用Matlab开发的Zebrafish追踪。我们发现斑马鱼首选蓝色照明到白色,以及红色的白色照明。用丙烯酰胺(2mM 36小时)的急性处理导致运动的显着降低和伴随的颜色优先游泳行为。丙烯酰胺处理的斑马鱼眼的组织病理学检查表明,丙烯酰胺暴露导致视网膜损伤。颜色偏好跟踪技术具有评估神经变性障碍的应用,作为临床前评估药物疗效和对毒性的行为评估的方法。 (c)2017年Elsevier Inc.保留所有权利。

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