Glial Inflammation

Glial inflammation is the immune-like activation of glial cells, including microglia and astrocytes, in response to infection, injury, or cellular stress in the nervous system. Activated microglia detect danger signals and release cytokines and chemokines, while astrocytes alter gene expression, signaling, and interactions with neurons and the blood-brain barrier. These responses can protect neural tissue by removing damaged material and coordinating repair, but persistent or excessive activation may disrupt neuronal function and promote tissue damage. Studying glial inflammation helps clarify mechanisms underlying neurodegenerative disease, traumatic brain injury, infection, and potential anti-inflammatory therapeutic strategies.

Glial Inflammation - Related Videos

Education

JoVE Core - Biology

Inflammation

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2019

Overview In response to tissue injury and infection, mast cells initiate inflammation. Mast cells release chemicals that increase the permeability of adjacent blood capillaries and attract additional immune cells to the wound or site of infection. Neutrophils are phagocytic leukocytes that exit the bloodstream and engulf invading microbes. Blood clotting platelets seal the wound and fibers create a scaffold for wound healing. Macrophages engulf aging neutrophils to end the acute inflammatory...

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...

Research

JoVE Journal - Biology

Visualizing the Live Drosophila Glial-neuromuscular Junction with Fluorescent Dyes

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Cited by 5 •

2009

We described structural features of the Glia-neuromuscular synapses in a novel Inside-out tissue preparation of live fly larvae using fluorescent dyes with confocal microscopy. We labeled live neuron terminals with fluorescent primary antibodies to HRP, and also visualized the perisynaptic space with fluorescent Dextrans.

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.

Obtaining a Mixed Glial Cell Culture from a Neonatal Mouse Brain

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2025

The video demonstrated the method of isolating and culturing cells from a neonatal mouse brain. It involved enzymatic and mechanical dissociation of the brain, followed by culturing in growth media lacking neuronal growth factor to obtain a mixed glial population.

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