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调控斑马鱼的睡眠和觉醒状态:当前和未来的方法。

Regulation of zebrafish sleep and arousal states: current and prospective approaches.

机构信息

Division of Biology, California Institute of Technology Pasadena, CA, USA.

出版信息

Front Neural Circuits. 2013 Apr 9;7:58. doi: 10.3389/fncir.2013.00058. eCollection 2013.

Abstract

Every day, we shift among various states of sleep and arousal to meet the many demands of our bodies and environment. A central puzzle in neurobiology is how the brain controls these behavioral states, which are essential to an animal's well-being and survival. Mammalian models have predominated sleep and arousal research, although in the past decade, invertebrate models have made significant contributions to our understanding of the genetic underpinnings of behavioral states. More recently, the zebrafish has emerged as a promising model system for sleep and arousal research. Here we review experimental evidence that the zebrafish, a diurnal vertebrate, exhibits fundamental behavioral and neurochemical characteristics of mammalian sleep and arousal. We also propose how specific advantages of the zebrafish can be harnessed to advance the field. These include tractable genetics to identify and manipulate molecular and cellular regulators of behavioral states, optical transparency to facilitate in vivo observation of neural structure and function, and amenability to high-throughput drug screens to discover novel therapies for neurological disorders.

摘要

每天,我们在不同的睡眠和觉醒状态之间转换,以满足身体和环境的各种需求。神经生物学的一个核心难题是大脑如何控制这些对动物的健康和生存至关重要的行为状态。哺乳动物模型在睡眠和觉醒研究中占主导地位,尽管在过去十年中,无脊椎动物模型为我们理解行为状态的遗传基础做出了重大贡献。最近,斑马鱼已成为睡眠和觉醒研究的有前途的模型系统。在这里,我们回顾了实验证据,证明这种昼夜活动的脊椎动物表现出了哺乳动物睡眠和觉醒的基本行为和神经化学特征。我们还提出了如何利用斑马鱼的特定优势来推动这一领域的发展。这些优势包括可用于识别和操纵行为状态的分子和细胞调节剂的可处理遗传特性、便于观察神经结构和功能的光学透明度,以及易于进行高通量药物筛选以发现治疗神经疾病的新疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e976/3620505/973da04539c0/fncir-07-00058-g0001.jpg

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