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Related Concept Videos

A Cell Culture Model for Studying the Role of Neuron-Glia Interactions in Ischemia11:36

A Cell Culture Model for Studying the Role of Neuron-Glia Interactions in Ischemia

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Here, we present a simple approach using specific culture media that allows the establishment of neuron- and astrocyte-enriched cultures, or neuron-glia cultures from the embryonic cortex, with high yield and...
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This protocol describes the indirect neuron-astrocyte coculture for compartmentalized analysis of neuron-glia...
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This video illustrates a method for establishing an indirect neuron-astrocyte co-culture using a compartmentalized approach. In this setup, neurons and astrocytes are spatially separated but share a conditioned medium. Neurotrophic factors released by astrocytes promote neuron differentiation and the formation of synaptic connections, suggesting neuron-glia...
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Imaging Analysis of Neuron to Glia Interaction in Microfluidic Culture Platform (MCP)-based Neuronal Axon and Glia Co-culture System09:34

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This study describes the procedures of setting up a novel neuronal axon and (astro)glia co-culture platform. In this co-culture system, manipulation of direct interaction between a single axon (and single glial cell) becomes feasible, allowing mechanistic analysis of the mutual neuron to glial...
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We developed a novel multi-compartment neuron co-culture microsystem platform for in vitro CNS axon-glia interaction research. The platform is capable of conducting up to six independent experiments in parallel and was fabricated using a newly developed macro/micro hybrid fabrication method.
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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...
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Related Experiment Video

Updated: Jan 20, 2026

A Cell Culture Model for Studying the Role of Neuron-Glia Interactions in Ischemia
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A Cell Culture Model for Studying the Role of Neuron-Glia Interactions in Ischemia

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Linking neuron-glia interactions and longevity.

Michael Pokrass1, Nan Hao1

  • 1Department of Molecular Biology, University of California San Diego, La Jolla, United States.

Elife
|January 19, 2026
PubMed
Summary
This summary is machine-generated.

Proteomics studies in fruit flies show that aging impacts males and females differently. A protein known as DIP-β plays a key role in these sex-specific aging processes.

Area of Science:

  • Gerontology
  • Molecular Biology
  • Drosophila melanogaster research

Background:

  • Aging is a complex process with varying effects across sexes.
  • Understanding molecular mechanisms underlying sex-specific aging is crucial.
Keywords:
D. melanogasterDIP-βagingcell surface proteomegliaintercellular signalingneurosciencesex-specific regulators

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The Indirect Neuron-astrocyte Coculture Assay: An In Vitro Set-up for the Detailed Investigation of Neuron-glia Interactions
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Related Experiment Videos

Last Updated: Jan 20, 2026

A Cell Culture Model for Studying the Role of Neuron-Glia Interactions in Ischemia
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The Indirect Neuron-astrocyte Coculture Assay: An In Vitro Set-up for the Detailed Investigation of Neuron-glia Interactions
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The Indirect Neuron-astrocyte Coculture Assay: An In Vitro Set-up for the Detailed Investigation of Neuron-glia Interactions

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Imaging Analysis of Neuron to Glia Interaction in Microfluidic Culture Platform MCP-based Neuronal Axon and Glia Co-culture System
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Imaging Analysis of Neuron to Glia Interaction in Microfluidic Culture Platform MCP-based Neuronal Axon and Glia Co-culture System

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