Bailey Jordan, Oliveri Anthony, Levin Edward D
Department of Psychiatry and Behavioral Sciences, Duke University Medical Center, Durham, North Carolina 27710, USA.
Birth Defects Res C Embryo Today. 2013 Mar;99(1):14-23. doi: 10.1002/bdrc.21027.
Zebrafish offer many advantages that complement classic mammalian models for the study of normal development as well as for the teratogenic effects of exposure to hazardous compounds. The clear chorion and embryo of the zebrafish allow for continuous visualization of the anatomical changes associated with development, which, along with short maturation times and the capability of complex behavior, makes this model particularly useful for measuring changes to the developing nervous system. Moreover, the rich array of developmental, behavioral, and molecular benefits offered by the zebrafish have contributed to an increasing demand for the use of zebrafish in behavioral teratology. Essential for this endeavor has been the development of a battery of tests to evaluate a spectrum of behavior in zebrafish. Measures of sensorimotor plasticity, emotional function, cognition and social interaction have been used to characterize the persisting adverse effects of developmental exposure to a variety of chemicals including therapeutic drugs, drugs of abuse and environmental toxicants. In this review, we present and discuss such tests and data from a range of developmental neurobehavioral toxicology studies using zebrafish as a model. Zebrafish provide a key intermediate model between high throughput in vitro screens and the classic mammalian models as they have the accessibility of in vitro models and the complex functional capabilities of mammalian models.
斑马鱼具有许多优势,可作为经典哺乳动物模型的补充,用于研究正常发育以及接触有害化合物的致畸作用。斑马鱼透明的卵膜和胚胎使得与发育相关的解剖学变化能够得到持续观察,再加上其较短的成熟时间和具备复杂行为的能力,使得该模型对于测量发育中的神经系统变化尤为有用。此外,斑马鱼所具有的一系列丰富的发育、行为和分子层面的优势,促使行为毒理学领域对斑马鱼的使用需求不断增加。为实现这一目标,开发一系列用于评估斑马鱼各种行为的测试方法至关重要。感觉运动可塑性、情绪功能、认知和社会互动等方面的测量方法已被用于表征发育过程中接触包括治疗药物、滥用药物和环境毒物在内的多种化学物质所产生的持续不良影响。在本综述中,我们展示并讨论了一系列以斑马鱼为模型的发育神经行为毒理学研究中的此类测试和数据。斑马鱼在高通量体外筛选和经典哺乳动物模型之间提供了一个关键的中间模型,因为它们具有体外模型的易操作性和哺乳动物模型的复杂功能能力。