Cerebellar Granule Cell Culture

Cerebellar granule cell culture is an in vitro technique for isolating and maintaining cerebellar granule neurons, the most abundant neurons in the cerebellum, to study neuronal development and function. Typically, granule cells are dissociated from early postnatal cerebellar tissue, plated on an adhesive substrate, and supported in defined culture conditions that regulate survival, differentiation, and synaptic maturation. Researchers use these cultures to examine neurite growth, ion-channel activity, neurotransmitter signaling, apoptosis, and responses to neurotoxic or pharmacological stimuli. Because the system provides an accessible and experimentally controlled neuronal population, it supports mechanistic studies of cerebellar biology and broader questions in cellular neuroscience.

Cerebellar Granule Cell Culture - Related Videos

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JoVE EoE - Neuronal Culture Techniques

Isolation and Culture of Mouse Primary Cerebellar Granule Neurons

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2025

This video demonstrates the technique for isolating and culturing primary mouse cerebellar granule neurons. Cells are treated with an antimetabolite to eliminate proliferating glial cells and produce a pure culture of cerebellar granule neurons.

Isolation and Culture of Post-Natal Mouse Cerebellar Granule Neuron Progenitor Cells and Neurons

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Cited by 93 •

2009

Here we present a method to isolate and culture cerebellar granule neuron progenitor cells and cerebellar granule neurons from postnatal mouse.

Ex Vivo Culture of Chick Cerebellar Slices and Spatially Targeted Electroporation of Granule Cell Precursors

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Cited by 4 •

2015

The cerebellar external granule layer is the site of the largest transit amplification in the developing brain. Here, we present a protocol to target genetic modification to this layer at the peak of proliferation using ex vivo electroporation and culture of cerebellar slices from embryonic Day 14 chick embryos.

Selective Depletion of Microglia from Cerebellar Granule Cell Cultures Using L-leucine Methyl Ester

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Cited by 10 •

2015

Microglia can influence neurons and other glia in culture by various non-cell autonomous mechanisms. Here, we present a protocol to selectively deplete microglia from primary neuronal cultures. This method has the potential to elucidate the role of microglial-neuronal interactions, with implications for neurodegenerative conditions where neuroinflammation is a hallmark feature.

Research

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.

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