首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >The Neuroblast Assay: An Assay for the Generation and Enrichment of Neuronal Progenitor Cells from Differentiating Neural Stem Cell Progeny Using Flow Cytometry
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The Neuroblast Assay: An Assay for the Generation and Enrichment of Neuronal Progenitor Cells from Differentiating Neural Stem Cell Progeny Using Flow Cytometry

机译:Neuroblast分析:使用流式细胞术从分化神经干细胞后代的神经元祖细胞的生成和富集的分析

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摘要

Neural stem cells (NSCs) can be isolated and expanded in large-scale, using the neurosphere assay and differentiated into the three major cell types of the central nervous system (CNS); namely, astrocytes, oligodendrocytes and neurons. These characteristics make neural stem and progenitor cells an invaluable renewable source of cells for in vitro studies such as drug screening, neurotoxicology and electrophysiology and also for cell replacement therapy in many neurological diseases. In practice, however, heterogeneity of NSC progeny, low production of neurons and oligodendrocytes, and predominance of astrocytes following differentiation limit their clinical applications. Here, we describe a novel methodology for the generation and subsequent purification of immature neurons from murine NSC progeny using fluorescence activated cell sorting (FACS) technology. Using this methodology, a highly enriched neuronal progenitor cell population can be achieved without any noticeable astrocyte and bona fide NSC contamination. The procedure includes differentiation of NSC progeny isolated and expanded from E14 mouse ganglionic eminences using the neurosphere assay, followed by isolation and enrichment of immature neuronal cells based on their physical (size and internal complexity) and fluorescent properties using flow cytometry technology. Overall, it takes 5-7 days to generate neurospheres and 6-8 days to differentiate NSC progeny and isolate highly purified immature neuronal cells.
机译:神经干细胞(NSC)可以使用神经球测定法进行大规模分离和扩增,并分化为中枢神经系统(CNS)的三种主要细胞类型。即星形胶质细胞,少突胶质细胞和神经元。这些特性使神经干细胞和祖细胞成为用于体外研究(例如药物筛选,神经毒理学和电生理学)以及许多神经疾病中的细胞替代疗法的宝贵的可再生细胞来源。然而,实际上,NSC后代的异质性,神经元和少突胶质细胞的低产量以及分化后星形胶质细胞的优势限制了它们的临床应用。在这里,我们描述了一种新的方法,用于使用荧光激活细胞分选(FACS)技术从鼠NSC后代产生和纯化未成熟神经元。使用这种方法,可以实现高度富集的神经元祖细胞群,而不会受到任何明显的星形胶质细胞和真正的NSC污染。该程序包括使用神经球测定法从E14小鼠神经节突起中分离并扩增的NSC后代进行分化,然后使用流式细胞仪技术根据其物理(大小和内部复杂性)和荧光特性分离和富集未成熟神经元细胞。总体而言,生成神经球需要5-7天,而分化NSC后代并分离高度纯化的未成熟神经元细胞则需要6-8天。

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