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小鼠海马兴奋性和类别特异性抑制性神经元跨不同器官型切片培养的单细胞电穿孔

Single-Cell Electroporation across Different Organotypic Slice Culture of Mouse Hippocampal Excitatory and Class-Specific Inhibitory Neurons.

作者信息

Keener David G, Cheung Amy, Futai Kensuke

机构信息

Brudnick Neuropsychiatric Research Institute, Department of Neurobiology, University of Massachusetts Medical School; Interdisciplinary Graduate Program, University of Massachusetts Medical School.

Brudnick Neuropsychiatric Research Institute, Department of Neurobiology, University of Massachusetts Medical School; UMMS MD/PhD Program, University of Massachusetts Medical School.

出版信息

J Vis Exp. 2020 Oct 6(164). doi: 10.3791/61662.

Abstract

Electroporation has established itself as a critical method for transferring specific genes into cells to understand their function. Here, we describe a single-cell electroporation technique that maximizes the efficiency (~80%) of in vitro gene transfection in excitatory and class-specific inhibitory neurons in mouse organotypic hippocampal slice culture. Using large glass electrodes, tetrodotoxin-containing artificial cerebrospinal fluid and mild electrical pulses, we delivered a gene of interest into cultured hippocampal CA1 pyramidal neurons and inhibitory interneurons. Moreover, electroporation could be carried out in cultured hippocampal slices up to 21 days in vitro with no reduction in transfection efficiency, allowing for the study of varying slice culture developmental stages. With interest growing in examining the molecular functions of genes across a diverse range of cell types, our method demonstrates a reliable and straightforward approach to in vitro gene transfection in mouse brain tissue that can be performed with existing electrophysiology equipment and techniques.

摘要

电穿孔已成为将特定基因导入细胞以了解其功能的关键方法。在此,我们描述了一种单细胞电穿孔技术,该技术可使小鼠脑片培养中兴奋性和类别特异性抑制性神经元的体外基因转染效率最大化(约80%)。使用大型玻璃电极、含河豚毒素的人工脑脊液和温和的电脉冲,我们将感兴趣的基因导入培养的海马CA1锥体神经元和抑制性中间神经元。此外,电穿孔可在体外培养长达21天的海马脑片中进行,而转染效率不会降低,从而能够研究不同脑片培养发育阶段。随着对研究多种细胞类型中基因分子功能的兴趣日益增加,我们的方法展示了一种可靠且直接的体外基因转染方法,可在小鼠脑组织中使用现有的电生理设备和技术进行。

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