Related Experiment Video
Updated: Jan 20, 2026

In utero Electroporation followed by Primary Neuronal Culture for Studying Gene Function in Subset of Cortical Neurons
Published on: October 8, 2010
Isolation and Nanoscale Electroporation of Primary Neuronal Cultures In Situ
Diego Alzate-Correa1, William Lawrence2, Natalia Higuita-Castro1,3
1Department of Biomedical Engineering, The Ohio State University, Columbus, OH, USA.
Abstract:
Developing effective gene therapies for disorders of the central nervous system (CNS) is extremely challenging due to the lack of safe and efficient gene delivery methods to neurons and glial cells, hampering the study of CNS physiology and the identification of novel therapeutic targets. Current gene transfer methodologies for neuronal cultures rely on synthetic nanoparticles or viral transduction. These approaches present low gene transfer efficiency, are highly toxic, and may induce adverse immune responses. Electroporation has been implemented as an alternative approach; however, this method is restricted for the most part to cells in suspension, and electrical overstimulation of the neuronal membrane may have detrimental consequences. To overcome these barriers, here we describe the implementation of nanochannel-based electroporation for gene delivery into primary neural cultures safely and efficiently. We outline the preparation of viable primary neuronal cultures from the hippocampus of E18.5 mouse embryos and describe the optimal parameter for transfection using a nanochannel-based electroporation platform.
Related Concept Videos
08:24In utero Electroporation followed by Primary Neuronal Culture for Studying Gene Function in Subset of Cortical Neurons
Primary Neuronal Cultures
12:29Primary Culture and Plasmid Electroporation of the Murine Organ of Corti.
08:09Primary Culture of Neurons Isolated from Embryonic Mouse Cerebellum
04:04Isolation and Culture of Primary Embryonic Mouse Midbrain Dopamine Neurons
05:49Isolation and Culture of Mouse Primary Cerebellar Granule Neurons
