斑马鱼神经系统疾病模型评述-2.应用:功能和神经解剖表型分析策略与化学筛选。

Oxford open neuroscience Pub Date : 2023-01-01 Epub Date: 2022-12-09 DOI:10.1093/oons/kvac019
Edward A Burton, Harold A Burgess
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引用次数: 0

摘要

分子通路和神经解剖结构的广泛系统发育保护与高效的基因修饰方法相结合,已被越来越多地用于生成人类疾病的斑马鱼模型。可以利用一系列强大的方法来分析这些模型,最终目的是阐明致病机制,加快找到有效治疗方法的努力。无偏见的神经行为测定可提供与患者临床异常相似的读数,尽管一些最有用的测定可量化临床上未常规评估的反应,而且斑马鱼和人类大脑之间的差异排除了表达疾病中出现的全部神经行为异常的可能性。使用荧光报告和标准化脑图谱的成像方法与脑结构的定量测量相结合,为将实验操作与神经结构的变化联系起来提供了一种无偏见的方法。结构和功能的定量分析可共同剖析神经表型的细胞和生理基础。这些方法可用作化学调节剂筛选的结果,为利用斑马鱼模型鉴定病理生理学小分子调节剂提供了重要机会,这些调节剂可能有助于了解疾病机制和可能的治疗方法。
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A Critical Review of Zebrafish Neurological Disease Models-2. Application: Functional and Neuroanatomical Phenotyping Strategies and Chemical Screens.

Extensive phylogenetic conservation of molecular pathways and neuroanatomical structures, associated with efficient methods for genetic modification, have been exploited increasingly to generate zebrafish models of human disease. A range of powerful approaches can be deployed to analyze these models with the ultimate goal of elucidating pathogenic mechanisms and accelerating efforts to find effective treatments. Unbiased neurobehavioral assays can provide readouts that parallel clinical abnormalities found in patients, although some of the most useful assays quantify responses that are not routinely evaluated clinically, and differences between zebrafish and human brains preclude expression of the full range of neurobehavioral abnormalities seen in disease. Imaging approaches that use fluorescent reporters and standardized brain atlases coupled with quantitative measurements of brain structure offer an unbiased means to link experimental manipulations to changes in neural architecture. Together, quantitative structural and functional analyses allow dissection of the cellular and physiological basis underlying neurological phenotypes. These approaches can be used as outputs in chemical modifier screens, which provide a major opportunity to exploit zebrafish models to identify small molecule modulators of pathophysiology that may be informative for understanding disease mechanisms and possible therapeutic approaches.

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