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Updated: Aug 11, 2026

Ex Utero Electroporation and Organotypic Slice Cultures of Embryonic Mouse Brains for Live-Imaging of Migrating GABAergic Interneurons
Published on: April 20, 2018
Cell and molecular mechanisms involved in the migration of cortical interneurons
Christine Métin1, Jean-Pierre Baudoin, Sonja Rakić
1Developpement Normal et Pathologique du Cerveau, INSERM, U616, 47 Boulevard de l'Hôpital, F-75651 Paris Cédex 13, France.
Abstract:
Since the discovery that the vast majority of the GABA-containing interneurons of the cerebral cortex arise in the subpallium, considerable effort has been put into the description of the precise origin of these neurons in subdivisions of the ganglionic eminence and in the migratory routes they follow on their way to the developing cortex. More recently, studies have focused on the molecular and cellular mechanisms that guide their migration. Investigations of the molecular mechanisms involved have demonstrated important roles for numerous transcription factors, motogenic factors and guidance molecules. Here, we review results of very recent analyses of the underlying cellular mechanisms and specifically of the movement of the nucleus, cytoplasmic components and neuritic processes during interneuron migration.
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