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Astrocyte-Mediated Neuroinflammation

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wiki page Created: 2026-04-02T07:19:54 By: crosslink-migration Quality: 50% ✓ SciDEX ID: wiki-mechanisms-astrocyte-neuroinflammat
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Astrocyte Neuroinflammation

Overview

Astrocytes represent the most abundant glial cell population in the central nervous system (CNS), constituting approximately 20-40% of the total glial cell population in the mammalian brain[@pmid2024]. These remarkable cells have evolved from simple supporting cells to specialized guardians of neural homeostasis, playing indispensable roles in metabolic support, electrolyte balance, neurotransmitter recycling, and immune defense[@pmid2023]. In the context of neurodegenerative diseases, astrocytes undergo profound phenotypic transformations that fundamentally alter their interactions with neurons and other glial cells, positioning them at the critical interface between neuroinflammation and neuronal dysfunction.

Neuroinflammation has emerged as a central pathological hallmark across the spectrum of neurodegenerative disorders, including Alzheimer's disease (AD), Parkinson's disease (PD), amyotrophic lateral sclerosis (OLS), and multiple sclerosis (MS)[@pmid2024a]. While microglia have historically received the most attention as the primary immune effector cells in the CNS, mounting evidence demonstrates that astrocytes are equally important players in the inflammatory cascade, contributing to both the propagation and resolution of neuroinflammatory processes[@pmid2023a]. The concept of "reactive astrogliosis" encompasses these dramatic changes in astrocyte morphology, gene expression, and functional properties that occur in response to CNS injury, infection, or disease.

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📊 Evidence Profile Foundational
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