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Updated: Jul 6, 2026

Gene Delivery to Postnatal Rat Brain by Non-ventricular Plasmid Injection and Electroporation
Published on: September 17, 2010
Efficient in vivo electroporation of the postnatal rodent forebrain
Camille Boutin1, Simone Diestel, Angélique Desoeuvre
1IBDML, CNRS/Université de Méditerranée, Campus de Luminy, Marseille, France.
Abstract:
Functional gene analysis in vivo represents still a major challenge in biomedical research. Here we present a new method for the efficient introduction of nucleic acids into the postnatal mouse forebrain. We show that intraventricular injection of DNA followed by electroporation induces strong expression of transgenes in radial glia, neuronal precursors and neurons of the olfactory system. We present two proof-of-principle experiments to validate our approach. First, we show that expression of a human isoform of the neural cell adhesion molecule (hNCAM-140) in radial glia cells induces their differentiation into cells showing a neural precursor phenotype. Second, we demonstrate that p21 acts as a cell cycle inhibitor for postnatal neural stem cells. This approach will represent an important tool for future studies of postnatal neurogenesis and of neural development in general.

