Epithelial Glial Interaction

Epithelial glial interaction describes reciprocal communication between epithelial cells and neighboring glia that helps coordinate barrier function, tissue maintenance, and responses to injury or inflammation. Signals can pass through direct cell contact or soluble mediators, including neurotransmitters, cytokines, and growth factors, enabling glia to influence epithelial permeability, secretion, proliferation, and repair while epithelial cells regulate glial activity and survival. In medicine, this relationship is relevant to organs such as the intestine, skin, and respiratory tract, where disrupted signaling may promote barrier dysfunction and chronic inflammation. Studying epithelial glial interaction supports disease modeling and the development of therapies that restore tissue homeostasis.

Epithelial Glial Interaction - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Isolating Enteric Glial Cells From the Submucosa and Lamina Propria of a Mouse

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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.

An Ex Vivo Explant Model for Studying Glial Interactions in the Mouse Retina

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2025

Here, we provide a detailed methodology for isolating the retina from the mouse eye for extended ex vivo experimentation. This protocol emphasizes making this technically demanding approach accessible for researchers who would like to take advantage of the research avenues afforded by keeping retinal glia in situ in live tissue.

Heterotypic Three-dimensional In Vitro Modeling of Stromal-Epithelial Interactions During Ovarian Cancer Initiation and Progression

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Cited by 20 •

2012

We describe methodologies for establishing in vitro heterotypic three-dimensional models comprising ovarian fibroblasts and normal ovarian surface or ovarian cancer epithelial cells. We discuss the use of these models to study stromal-epithelial interactions that occur during ovarian cancer development.

Research

JoVE Journal - Neuroscience
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Derivation of Glial Restricted Precursors from E13 mice

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Cited by 18 •

2012

This protocol outlines the derivation of Glial Restricted Precursors from fetal spinal cords and maintained in vitro either for transplantation or for the study of oligodendrocytic lineage.

Education

JoVE Core - Biology

Glial Cells

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2025

Overview Glial cells are one of the two main types of cells in the nervous system. Glia cells comprise astrocytes, oligodendrocytes, microglia, and ependymal cells in the central nervous system, and satellite and Schwann cells in the peripheral nervous system. These cells do not communicate via electrical signals like neurons do, but they contribute to virtually every other aspect of nervous system function. In humans, the number of glial cells is roughly equal to the number of neurons in the...

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