Glial Subpopulation Isolation

Glial subpopulation isolation is the process of separating distinct classes or states of glial cells from nervous tissue for focused study of their biology and function. Researchers typically dissociate tissue into a cell suspension, then use cell-surface markers, immunolabeling, fluorescence-activated cell sorting, magnetic-activated cell sorting, or related enrichment methods to distinguish populations such as astrocytes, microglia, and oligodendrocyte-lineage cells. Isolated cells support analyses of gene expression, cellular signaling, development, and responses to injury or disease. By reducing cellular heterogeneity, this approach helps clarify how specific glial populations shape neural circuits, neuroinflammation, myelination, and potential therapeutic responses.

Glial Subpopulation Isolation - Related Videos

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JoVE EoE - Neuronal Culture Techniques

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2025

This video demonstrates a method for isolating enteric glial cells from the submucosa and lamina propria of the mouse intestine. It outlines the steps involved in extracting submucosa and lamina propria tissue, isolating the enteric glial cells from them, and culturing the cells on a coated well-plate to establish an enteric glial cell culture.

Leukemic Subpopulation Harvest: A Method for Spatial Separation of Leukemic Cell Subpopulations from 2D Co-culture

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2023

This video describes a method for spatial separation of three leukemic cell subpopulations: the suspended leukemic cells freely floating in the media, phase bright leukemic cells adhered to the surface of the mesenchymal stromal cell monolayer, and the phase dim leukemic cells that have migrated beneath the mesenchymal stromal cell monolayer from 2D co-culture.

Study Glial Cell Heterogeneity Influence on Axon Growth Using a New Coculture Method

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Cited by 5 •

2010

In this protocol, we described a new method to study the influence of glial cell heterogeneity on axon growth with an in vitro co-culture system. Rat cortical glial cells were cultured to confluence and cocultured with highly purified rat dorsal root ganglia neurons. Different glial cell influence on neurons adhesion and axon growth was compared directly in the same culture. This method provides a new way to directly study the glial cell heterogeneity influence on neuron adhesion and axon...

Research

JoVE Journal - Immunology and Infection
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Detection of Fluorescent Nanoparticle Interactions with Primary Immune Cell Subpopulations by Flow Cytometry

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Cited by 13 •

2014

Analysis of nanoparticle interaction with defined subpopulations of immune cells by flow cytometry.

Primary Microglia Isolation from Mixed Glial Cell Cultures of Neonatal Rat Brain Tissue

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Cited by 133 •

2012

Isolating primary microglia from the cellular heterogeneity of the brain is essential to investigate their role in both physiological and pathological conditions. This protocol describes a mechanical isolation and mixed cell culture technique that provides high yield and high purity, viable primary microglial cells for in vitro study and downstream applications.

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