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Spatiotemporal Dynamics and Cellular States of Neuroinflammation in Amyotrophic Lateral Sclerosis: Implications for Stage‑Specific Therapeutics

Aug 2026 · ASN Neuro · Vol 18 · 0 citations · 193 references
Medicine

Abstract

Abstract Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disease with a complex and heterogeneous pathogenesis. Accumulating preclinical and clinical evidence indicates that neuroinflammation is an important modulator of ALS pathophysiology, involving activation of resident central nervous system immune cells, dysfunction of glial support systems, disruption of neurovascular barriers, and altered recruitment of peripheral immune cells. ALS-associated neuroinflammation is temporally dynamic and varies across anatomical compartments and cellular contexts. Multiple animal models, human neuroimaging, and post-mortem tissue suggest that relatively regulated or compensatory immune responses during early stage may progressively shift to persistent, maladaptive, and potentially neurotoxic inflammatory circuits in later stage. Although previous studies have described stage-dependent changes in individual immune cell populations, an integrated stage-dependent systematic framework that unifies dynamic alterations in both central and peripheral immune compartments remains insufficiently established. In this review, we propose a four-phase conceptual framework for ALS neuroinflammation across the progressive ALS pathogenesis, aiming to provide theoretical guidance for staging inflammatory therapeutic interventions.

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