Astrocyte Activation Analysis

Astrocyte activation analysis is the assessment of how astrocytes, the central nervous system’s supportive and homeostatic glial cells, respond to injury, infection, inflammation, or neurodegeneration. Activation can alter cell morphology, gene expression, and inflammatory signaling, and researchers measure these changes using markers such as glial fibrillary acidic protein, immunostaining, microscopy, and molecular assays. In medicine, this analysis helps characterize reactive gliosis, evaluate neuroinflammatory and neurodegenerative disease mechanisms, and assess responses to injury or treatment. Reliable measurement can clarify whether astrocyte responses protect neural tissue, contribute to pathology, or provide targets for therapeutic development.

Astrocyte Activation Analysis - Related Videos

Research

JoVE Journal - Neuroscience

Protocol for Three-dimensional Confocal Morphometric Analysis of Astrocytes

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Cited by 11 •

2015

Astrocytes in the CNS change their functional and structural properties in response to harmful stimuli. This report presents a protocol for assessment of three-dimensional astrocyte morphology in diseased conditions or after therapeutic interventions.

Analysis of Schwann-astrocyte Interactions Using In Vitro Assays

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Cited by 6 •

2011

This article intends to describe in stepwise fashion the commonly used in vitro assays used in studying Schwann cell-asrtocyte interactions.

Recording Electrophysiological Activity of the Neuronal Network in a Neuron-Astrocyte Co-culture

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2025

This video demonstrates establishing a neuron-astrocyte co-culture for recording neuronal network activity. Upon establishing the co-culture of motor neurons and astrocytes on a multi-electrode array (MEA) plate, the synchronous rhythmic electrical activity of the neuronal network was recorded extracellularly using the MEA.

Deriving the Time Course of Glutamate Clearance with a Deconvolution Analysis of Astrocytic Transporter Currents

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Cited by 11 •

2013

We describe an analytical method to estimate the lifetime of glutamate at astrocytic membranes from electrophysiological recordings of glutamate transporter currents in astrocytes.

Correlating Gene-specific DNA Methylation Changes with Expression and Transcriptional Activity of Astrocytic KCNJ10 (Kir4.1)

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Cited by 9 •

2015

DNA methylation is capable of maintaining stable levels of gene expression as well as allowing for dynamic changes in gene expression in response to a variety of stimuli. We detail techniques that allow the study of gene-specific changes in DNA methylation and the effect of these changes on gene expression.

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