首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >One Mouse Two Cultures: Isolation and Culture of Adult Neural Stem Cells from the Two Neurogenic Zones of Individual Mice
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One Mouse Two Cultures: Isolation and Culture of Adult Neural Stem Cells from the Two Neurogenic Zones of Individual Mice

机译:一只小鼠两种文化:分离和从单个小鼠的两个神经源性区域的成人神经干细胞的培养。

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摘要

The neurosphere assay and the adherent monolayer culture system are valuable tools to determine the potential (proliferation or differentiation) of adult neural stem cells in vitro. These assays can be used to compare the precursor potential of cells isolated from genetically different or differentially treated animals to determine the effects of exogenous factors on neural precursor cell proliferation and differentiation and to generate neural precursor cell lines that can be assayed over continuous passages. The neurosphere assay is traditionally used for the post-hoc identification of stem cells, primarily due to the lack of definitive markers with which they can be isolated from primary tissue and has the major advantage of giving a quick estimate of precursor cell numbers in brain tissue derived from individual animals. Adherent monolayer cultures, in contrast, are not traditionally used to compare proliferation between individual animals, as each culture is generally initiated from the combined tissue of between 5-8 animals. However, they have the major advantage that, unlike neurospheres, they consist of a mostly homogeneous population of precursor cells and are useful for following the differentiation process in single cells. Here, we describe, in detail, the generation of neurosphere cultures and, for the first time, adherent cultures from individual animals. This has many important implications including paired analysis of proliferation and/or differentiation potential in both the subventricular zone (SVZ) and dentate gyrus (DG) of treated or genetically different mouse lines, as well as a significant reduction in animal usage.
机译:神经球测定法和贴壁单层培养系统是确定体外成年神经干细胞潜力(增殖或分化)的有价值的工具。这些测定可用于比较从遗传不同或经过差异处理的动物中分离出的细胞的前体潜能,以确定外源因素对神经前体细胞增殖和分化的影响,并生成可通过连续传代进行分析的神经前体细胞系。传统上,神经球测定法用于干细胞的事后鉴定,这主要是由于缺乏可从原发组织中分离出的明确标志物,其主要优点是可以快速估算脑组织中的前体细胞数量源自个别动物。相反,传统上不使用粘附的单层培养物来比较单个动物之间的增殖,因为每种培养物通常是从5-8只动物的合并组织中引发的。但是,它们的主要优点是,与神经球不同,它们由前体细胞的大部分同质组成,可用于跟踪单个细胞的分化过程。在这里,我们详细描述了神经球培养物的产生以及首次从单个动物中获得的附着培养物。这具有许多重要的意义,包括对治疗或遗传上不同的小鼠品系的脑室下区域(SVZ)和齿状回(DG)的增殖和/或分化潜能进行配对分析,以及显着减少动物的使用。

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