斑马鱼作为神经学研究替代动物模型的研究进展

Khode Aniket Prakash , Darshana Sunil Nagmoti , Manali Sanjayswami Borkar , Hiray Kuldeep Pannalal , Nagaraju Bandaru
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引用次数: 0

摘要

斑马鱼(Danio rerio)由于其独特的遗传、解剖和生理特征组合而成为神经学研究中强有力的替代动物模型。它们透明的胚胎发育,与人类高度的基因同源性,以及良好的神经系统特征,使它们在研究神经系统疾病和障碍方面具有宝贵的价值。斑马鱼具有繁殖迅速、成本效益高、适合高通量筛选等实际优势。它们已被广泛用于研究神经发育障碍,神经退行性疾病,如帕金森病和阿尔茨海默病,以及癫痫。此外,它们对基因操作的适应性使人类神经系统状况的精确建模成为可能。斑马鱼的行为分析提供了对认知、运动和情绪功能的见解,可以量化研究疾病表型和治疗干预。成像技术的最新进展,如利用钙指示剂对神经元活动进行实时成像,进一步增强了它们的实用性。这篇综述强调了斑马鱼作为替代模型系统的优势,讨论了基于斑马鱼的神经学研究的主要发现,并概述了将发现转化为哺乳动物系统等挑战。通过巩固现有知识,本文强调斑马鱼在促进我们对神经机制的理解和开发新的脑部疾病治疗方法方面的关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review on zebra fish as an alternative animal model for neurological studies
Zebrafish (Danio rerio) have emerged as a powerful alternative animal model in neurological research due to their unique combination of genetic, anatomical, and physiological characteristics. Their transparent embryonic development, high genetic homology with humans, and well-characterized nervous system make them invaluable for studying neurological diseases and disorders. Zebrafish offer practical advantages such as rapid reproduction, cost-effectiveness, and suitability for high-throughput screening. They have been extensively utilized to investigate neurodevelopmental disorders, neurodegenerative diseases like Parkinson's and Alzheimer's, and epilepsy. Moreover, their amenability to genetic manipulation enables precise modeling of human neurological conditions. Behavioral assays in zebrafish provide insights into cognitive, motor, and emotional functions, which can be quantified to study disease phenotypes and therapeutic interventions. Recent advances in imaging techniques, such as live imaging of neuronal activity using calcium indicators, have further enhanced their utility. This review highlights the advantages of zebrafish as an alternative model system, discusses key findings from zebrafish-based neurological studies, and outlines challenges such as translating findings to mammalian systems. By consolidating current knowledge, this article emphasizes the pivotal role of zebrafish in advancing our understanding of neurological mechanisms and in developing novel treatments for brain disorders.
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来源期刊
Advances in biomarker sciences and technology
Advances in biomarker sciences and technology Biotechnology, Clinical Biochemistry, Molecular Medicine, Public Health and Health Policy
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