Granule Cell Migration

Granule cell migration is the developmental movement of immature neurons to their correct positions, a process essential for organizing functional neural circuits, especially in the cerebellum. Cerebellar granule cells travel from the external germinal layer inward along Bergmann glial fibers, while extracellular cues and intracellular cytoskeletal remodeling guide their direction, timing, and maturation. Pharmacological agents that alter neurotransmitter signaling, calcium-dependent pathways, or cytoskeletal function can disrupt this movement and affect cerebellar development. Studying granule cell migration therefore helps researchers investigate neurodevelopmental disorders, developmental neurotoxicity, and how drugs influence neuronal positioning and circuit formation.

Granule Cell Migration - Related Videos

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JoVE Journal - Neuroscience
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Ex Vivo Imaging of Postnatal Cerebellar Granule Cell Migration Using Confocal Macroscopy

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Cited by 8 •

2015

During postnatal cerebellum development, immature granule cells originating from the germinal zone exhibit distinct modalities of migration to reach their final destination and to establish neuronal networks. This protocol describes the preparation of cerebellar slices and the confocal macroscopic approach used to investigate the factors that regulate neuronal migration.

Research

JoVE EoE - Neuroimaging

Ex Vivo Imaging of Postnatal Cerebellar Granule Cell Migration Using Confocal Macroscopy

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2025

Source: Bénard, M., et al. Ex Vivo Imaging of Postnatal Cerebellar Granule Cell Migration Using Confocal Macroscopy. J. Vis. Exp. (2015)This video demonstrates a confocal macroscopic method to track the ex vivo migration of granule cells in cerebellar slices from postnatal rat brains.

Genetic Manipulation of Cerebellar Granule Neurons In Vitro and In Vivo to Study Neuronal Morphology and Migration

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Cited by 8 •

2014

Neuronal morphogenesis and migration are crucial events underlying proper brain development. Here, we describe methods to genetically manipulate cultured cerebellar granule neurons and the developing cerebellum for the assessment of morphology and migratory characteristics of neurons.

Investigating Mast Cell Secretory Granules; from Biosynthesis to Exocytosis

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Cited by 9 •

2015

The goal of the present protocol was to develop a method that will allow functional genomic analyses of mast cell secretion. The protocol is based on quantitative assessment of the release of a fluorescent reporter gene cotrasfected with the gene of interest and real time analyses of the secretory granule's morphology.

An In Vitro Technique to Visualize Exocytosis of Secretory Granules in Mast Cells

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2025

This video demonstrates a technique to visualize exocytosis in mast cells. The cells are incubated with FITC-dextran — a fluorescent reporter — which is taken up by cells inside secretory granules (SGs), where the acidic pH quenches its fluorescence. Upon stimulation of granule exocytosis, the medium's higher pH induces reporter fluorescence inside the fused SGs, which is visualized using a fluorescence microscope.

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