The dual nature of neuroinflammation in networked brain
Двойственная природа нейровоспаления в сетевом мозге
2025-08-20
SCID: 54.1/5tvmwy7z
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cytokine signalingimmunometabolic cuesmicroglia and astrocytesneuroimmune dynamicsneuroinflammation
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Abstract (AI)
Neuroinflammation is a dynamic, context-sensitive process that plays essential roles in brain development, maintenance, and response to injury. It reflects a finely balanced neuroimmune state-facilitating repair and adaptation under homeostatic conditions, while also contributing to dysfunction when dysregulated or chronically activated. In this mini-review, we examine the cellular and molecular mechanisms underlying neuroinflammatory responses, focusing on the roles of microglia and astrocytes, their bidirectional communication with neurons, and their interaction with peripheral immune signals. We describe how various stimuli-including aging, protein aggregates, and cellular stress-modulate glial function and shift immune activity toward protective or deleterious outcomes. Special attention is given to endogenous regulatory pathways, including cytokine signaling, receptor-mediated crosstalk, and immunometabolic cues that determine the resolution or persistence of inflammation. We further discuss shared and disease-specific features of neuroinflammation across neurological disorders, offering a systems-level perspective on how immune activity contributes to neural resilience or degeneration. This integrated view aims to inform future studies on neuroimmune dynamics in health and disease.
Key Findings
1
Aging, protein aggregates, and cellular stress can shift glial activity toward either protective or deleterious immune responses.
2
Cytokine signaling, receptor-mediated crosstalk, and immunometabolic cues influence whether neuroinflammation resolves or persists.
3
Microglia and astrocytes regulate neuroinflammatory outcomes through bidirectional communication with neurons and interactions with peripheral immune signals.
4
Neuroinflammation has a dual role, supporting brain repair and adaptation under homeostasis but promoting dysfunction when dysregulated or chronically activated.
5
Neuroinflammation shares common mechanisms across neurological disorders while also exhibiting disease-specific features that shape neural resilience or degeneration.
Research Object
Neuroinflammatory responses in the brain, involving microglia, astrocytes, neurons, and peripheral immune signals
Research Subject
The cellular and molecular mechanisms determining whether neuroinflammation is protective and resolving or persistent and deleterious across health, aging, and neurological disease
Publication Details
Publication Date
2025-08-20
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