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斑马鱼作为疼痛研究的模型。

The zebrafish as a model for nociception studies.

机构信息

Sbarro Institute for Cancer Research and Molecular Medicine, Temple University, Philadelphia, Pennsylvania, USA.

出版信息

J Cell Physiol. 2013 Oct;228(10):1956-66. doi: 10.1002/jcp.24379.

Abstract

Nociception is the sensory mechanism used to detect cues that can harm an organism. The understanding of the neural networks and molecular controls of the reception of pain remains an ongoing challenge for biologists. While we have made significant progress in identifying a number of molecules and pathways that are involved in transduction of noxious stimuli, from the skin through the sensory receptor cell and from this to the spinal cord on into the central nervous system, we still lack a clear understanding of the perceptual processes, the responses to pain and the regulation of pain perception. Mice and rat animal models have been extensively used for nociception studies. However, the study of pain and noiception in these organisms can be rather laborious, costly and time consuming. Conversely, the use of Drosophila and Caenorhabditis elegans may be affected by the large evolutionary distance between these animals and humans. We outline here the reasons why zebrafish presents a new and attractive model for studying pain reception and responses and the most interesting findings in the study of nociception that have been obtained using the zebrafish model.

摘要

伤害感受是用于检测可能伤害生物体的线索的感觉机制。对于生物学家来说,理解疼痛接收的神经网络和分子控制仍然是一个持续的挑战。虽然我们已经在识别许多参与有害刺激转导的分子和途径方面取得了重大进展,从皮肤到感觉受体细胞,再从这里到脊髓进入中枢神经系统,但我们仍然缺乏对感知过程、对疼痛的反应和对疼痛感知的调节的清晰理解。小鼠和大鼠动物模型已被广泛用于伤害感受研究。然而,在这些生物体中研究疼痛和伤害感受可能相当费力、昂贵和耗时。相反,使用果蝇和秀丽隐杆线虫可能会受到这些动物与人类之间巨大进化距离的影响。我们在这里概述了为什么斑马鱼是研究疼痛接收和反应的新的、有吸引力的模型的原因,以及使用斑马鱼模型在伤害感受研究中获得的最有趣的发现。

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