Olfactory Ensheathing Glia

Olfactory ensheathing glia are specialized glial cells that surround olfactory receptor neuron axons and support the continual renewal of connections between the nasal epithelium and the olfactory bulb. They promote axon extension by providing guiding cellular pathways, releasing supportive molecular signals, and helping clear cellular debris during ongoing neural turnover. In neuroscience, researchers study these cells to understand axon regeneration, neuron-glia interactions, and repair in the olfactory system. Their capacity to support growing axons has also made them a candidate for transplantation-based strategies aimed at restoring connectivity after spinal cord or other nervous system injuries.

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JoVE EoE - Neuronal Culture Techniques

Coculturing of Retinal Ganglion Neurons with Olfactory Ensheathing Glia

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2025

This video demonstrates the procedure to isolate retinal ganglion neurons (RGNs) from a rat's retina and coculture them with olfactory ensheathing glia (OEG) cells. This method allows for studying the neuro-regenerative potential of OEGs after neural injury.

Coculture of Axotomized Rat Retinal Ganglion Neurons with Olfactory Ensheathing Glia, as an In Vitro Model of Adult Axonal Regeneration

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Cited by 5 •

2020

We present an in vitro model to assess olfactory ensheathing glia (OEG) neuroregenerative capacity, after neural injury. It is based on a coculture of axotomized adult retinal ganglion neurons (RGN) on OEG monolayers and subsequent study of axonal regeneration, by analyzing RGN axonal and somatodendritic markers.

Transplantation of Olfactory Ensheathing Cells to Evaluate Functional Recovery after Peripheral Nerve Injury

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Cited by 16 •

2014

Olfactory ensheathing cells (OECs) are neural crest cells which allow growth of the primary olfactory neurons. This specific property can be used for cellular transplantation. We present here a model of cellular transplantation based on the use of OECs in a laryngeal nerve injury model.

Application of MultiColor FlpOut Technique to Study High Resolution Single Cell Morphologies and Cell Interactions of Glia in Drosophila

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Cited by 4 •

2017

Cells display different morphologies and establish a variety of interactions with their neighbors. This protocol describes how to reveal the morphology of single cells and to investigate cell-cell interaction by using the well-established Gal4/UAS expression system.

Bilaminar Co-culture of Primary Rat Cortical Neurons and Glia

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Cited by 26 •

2011

Here we provide a protocol for culturing rat cortical neurons in the presence of a glial feeder layer. The cultured neurons establish polarity and create synapses, and can be separated from the glia for use in various applications, such as electrophysiology, calcium imaging, cell survival assays, immunocytochemistry, and RNA/DNA/protein isolation.

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