流式细胞术表征神经球细胞表型。

Cytometry Pub Date : 2000-07-01
R Hulspas, P J Quesenberry
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引用次数: 0

摘要

背景:神经干细胞研究经常利用神经球培养作为原始神经细胞的连续来源。目前的祖细胞测定结果表明,这些培养物含有少量的神经祖细胞。我们的目标是表征神经球培养和定义亚群,以纯化神经祖细胞。方法:采用Hoechst 33342染色法对小鼠胚胎神经球培养细胞进行流式细胞术分析。亚种群是根据它们在光谱的蓝色和红色区域的相对荧光强度进行分类的。培养7天后重新分析个体分类亚群。结果:神经球培养物含有相对较多的细胞,Hoechst 33342染色较弱。当在表皮生长因子(EGF)存在下作为整个批培养时,该亚群存在。当单独培养时,该亚群产生的神经球群具有与新鲜分离的胚胎小鼠脑细胞基本相同的特征,但含有较少的弱hoechst染色细胞。结论:类似于造血系统,神经球培养包含一个亚群,其特征是低发射的赫斯特荧光。当单独培养时,该亚群产生类似于新分离的未培养的神经细胞的表型。
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Characterization of neurosphere cell phenotypes by flow cytometry.

Background: Neural stem cell research regularly utilizes neurosphere cultures as a continuous source of primitive neural cells. Results from current progenitor cell assays show that these cultures contain a low number of neural progenitors. Our goal is to characterize neurosphere cultures and define subpopulations in order to purify neural progenitor cells.

Methods: Cells from embryonic mouse neurosphere cultures were stained with Hoechst 33342 and analyzed by flow cytometry. Subpopulations were sorted based on their relative fluorescence intensity in the blue and red regions of the spectrum. Individual sorted subpopulations were reanalyzed after 7 days in culture.

Results: Neurosphere cultures contain a relatively high number of cells that stain weakly with Hoechst 33342. This subpopulation is present when cultured as an entire batch in the presence of epidermal growth factor (EGF). When cultured separately, this subpopulation gives rise to a neurosphere population with essentially the same characteristics as freshly isolated embryonic mouse brain cells but contains substantially fewer weakly Hoechst-stained cells.

Conclusions: Similar to hemopoietic systems, neurosphere cultures contain a subpopulation that can be characterized by a low emission of Hoechst fluorescence. When cultured separately, this subpopulation gives rise to a phenotype similar to freshly isolated, uncultured neural cells.

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