Berl Sabina, Karram Khalad, Scheller Anja, Jungblut Melanie, Kirchhoff Frank, Waisman Ari
Institute for Molecular Medicine, Obere Zahlbacher Str. 67, D-55131 Mainz, Germany.
Center for Integrative Physiology and Molecular Medicine (CIPMM), Molecular Physiology, University of Saarland, Building 48, D-66421 Homburg, Germany.
J Neurosci Methods. 2017 May 1;283:15-22. doi: 10.1016/j.jneumeth.2017.03.015. Epub 2017 Mar 21.
Isolation of neurons from the adult mouse CNS is important in order to study their gene expression during development or the course of different diseases.
Here we present two different methods for the enrichment or isolation of neurons from adult mouse CNS. These methods: are either based on flow cytometry sorting of eYFP expressing neurons, or by depletion of non-neuronal cells by sorting with magnetic-beads.
Enrichment by FACS sorting of eYFP positive neurons results in a population of 62.4% NeuN positive living neurons. qPCR data shows a 3-5fold upregulation of neuronal markers. The isolation of neurons based on depletion of non-neuronal cells using the Miltenyi Neuron Isolation Kit, reaches a purity of up to 86.5%. qPCR data of these isolated neurons shows an increase in neuronal markers and an absence of glial markers, proving pure neuronal RNA isolation.
Former data related to neuronal gene expression are mainly based on histology, which does not allow for high-throughput transcriptome analysis to examine differential gene expression.
These protocols can be used to study cell type specific gene expression of neurons to unravel their function in the process of damage to the CNS.
从成年小鼠中枢神经系统分离神经元对于研究其在发育过程或不同疾病进程中的基因表达非常重要。
在此,我们展示了两种从成年小鼠中枢神经系统富集或分离神经元的不同方法。这些方法:要么基于对表达eYFP的神经元进行流式细胞术分选,要么通过用磁珠分选来去除非神经元细胞。
通过对eYFP阳性神经元进行荧光激活细胞分选(FACS)富集,得到了一群62.4% NeuN阳性的活神经元。定量聚合酶链反应(qPCR)数据显示神经元标志物上调了3至5倍。使用美天旎神经元分离试剂盒基于去除非神经元细胞来分离神经元,纯度高达86.5%。这些分离神经元的qPCR数据显示神经元标志物增加且无胶质细胞标志物,证明了纯神经元RNA的分离。
以前与神经元基因表达相关的数据主要基于组织学,这无法进行高通量转录组分析以检查差异基因表达。
这些方案可用于研究神经元的细胞类型特异性基因表达,以揭示它们在中枢神经系统损伤过程中的功能。