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原代神经培养物的电穿孔:一种体外定向基因转移的简单方法。

Electroporation of primary neural cultures: a simple method for directed gene transfer in vitro.

作者信息

Mertz Kirsten D, Weisheit Gunnar, Schilling Karl, Lüers Georg H

机构信息

Anatomisches Institut, Anatomie und Zellbiologie, Rheinische Freidrich-Wilhelms-Universität Bonn, Germany.

出版信息

Histochem Cell Biol. 2002 Dec;118(6):501-6. doi: 10.1007/s00418-002-0473-4. Epub 2002 Nov 8.

Abstract

Gene transfer into cells of the nervous system is an important method to analyze tissue-specific gene functions. Although highest transfection efficiencies are generally obtained by viral gene transfer, non-viral methods are attractive because they are less labor intensive and more suitable for high throughput screening approaches. Here we describe an approach for electroporation-based gene transfer into primary neural cells isolated from dissociated murine cerebella. Using GFP as reporter molecule, we show that electroporation allows for efficient gene transfer into embryonic and postnatal neural cells under highly controlled experimental conditions. Furthermore we show that adaptation of electroporation parameters allowed for the preferential transfection of subsets of neural cells within the mixed primary culture. Using electroporation settings of high voltage and low capacitance (500 V/50 microF) we achieved a transfection efficiency of about 10% of small neural cells which were identified as granule cells by the expression of the granule cell-specific marker NeuN. At electroporation settings of 220 V/975 microF, large and stellate-shaped cells that comprised about 10% of the GFAP-positive population of astrocytes were preferentially transfected. We conclude that electroporation of primary neural cells can be used to target gene transfer to subsets of neural cells.

摘要

基因导入神经系统细胞是分析组织特异性基因功能的重要方法。虽然病毒基因转移通常能获得最高的转染效率,但非病毒方法也很有吸引力,因为它们所需的劳动力较少,更适合高通量筛选方法。在此,我们描述了一种基于电穿孔的基因导入方法,用于将基因导入从小鼠分离的小脑解离的原代神经细胞。以绿色荧光蛋白(GFP)作为报告分子,我们表明在高度可控的实验条件下,电穿孔能够有效地将基因导入胚胎期和出生后的神经细胞。此外,我们还表明,调整电穿孔参数可使混合原代培养物中的神经细胞亚群实现优先转染。使用高电压和低电容(500 V/50微法) 的电穿孔设置,我们实现了约10%的小神经细胞的转染效率,这些小神经细胞通过颗粒细胞特异性标志物NeuN的表达被鉴定为颗粒细胞。在220 V/975微法的电穿孔设置下,约占星形胶质细胞GFAP阳性群体10%的大的和星状细胞被优先转染。我们得出结论,原代神经细胞的电穿孔可用于将基因靶向转移至神经细胞亚群。

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