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Updated: May 1, 2026

Modeling Neural Immune Signaling of Episodic and Chronic Migraine Using Spreading Depression In Vitro
Published on: June 13, 2011
Spreading depression requires microglia and is decreased by their M2a polarization from environmental enrichment
Kae M Pusic1, Aya D Pusic, Jordan Kemme
1Department of Neurology, The University of Chicago, Chicago, Illinois.
Abstract:
Microglia play an important role in fine-tuning neuronal activity. In part, this involves their production of tumor necrosis factor-alpha (TNFα), which increases neuronal excitability. Excessive synaptic activity is necessary to initiate spreading depression (SD). Increased microglial production of proinflammatory cytokines promotes initiation of SD, which, when recurrent, may play a role in conversion of episodic to high frequency and chronic migraine. Previous work shows that this potentiation of SD occurs through increased microglial production of TNFα and reactive oxygen species, both of which are associated with an M1-skewed microglial population. Hence, we explored the role of microglia and their M1 polarization in SD initiation. Selective ablation of microglia from rat hippocampal slice cultures confirmed that microglia are essential for initiation of SD. Application of minocycline to dampen M1 signaling led to increased SD threshold. In addition, we found that SD threshold was increased in rats exposed to environmental enrichment. These rats had increased neocortical levels of interleukin-11 (IL-11), which decreases TNFα signaling and polarized microglia to an M2a-dominant phenotype. M2a microglia reduce proinflammatory signaling and increase production of anti-inflammatory cytokines, and therefore may protect against SD. Nasal administration of IL-11 to mimic effects of environmental enrichment likewise increased M2a polarization and increased SD threshold, an effect also seen in vitro. Similarly, application of conditioned medium from M2a polarized primary microglia to slice cultures also increased SD threshold. Thus, microglia and their polarization state play an essential role in SD initiation, and perhaps by extension migraine with aura and migraine.
Insights
Microglia are essential for initiating spreading depression (SD), a process linked to chronic migraine. Modulating microglial polarization, particularly towards an M2a phenotype, can increase the threshold for SD, potentially offering migraine protection.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglia, the brain's immune cells, modulate neuronal activity via factors like tumor necrosis factor-alpha (TNFα).
- An M1-skewed microglial state, associated with increased TNFα and reactive oxygen species, promotes the initiation of spreading depression (SD).
- Recurrent SD is implicated in the transition from episodic to chronic migraine.
Purpose of the Study:
- To investigate the critical role of microglia and their M1 polarization in the initiation of spreading depression (SD).
- To explore potential therapeutic strategies for migraine by targeting microglial function.
Main Methods:
- Selective ablation of microglia in rat hippocampal slice cultures.
- Pharmacological inhibition of M1 microglial signaling using minocycline.
- Environmental enrichment paradigms and assessment of neocortical interleukin-11 (IL-11) levels.
- Nasal administration of IL-11 and application of conditioned medium from M2a-polarized microglia.
Main Results:
- Microglia are essential for SD initiation; their ablation prevents SD.
- Minocycline, which dampens M1 signaling, increased the SD threshold.
- Environmental enrichment increased neocortical IL-11, promoted M2a microglial polarization, and raised the SD threshold.
- IL-11 administration and M2a microglial conditioned medium increased the SD threshold, both in vivo and in vitro.
Conclusions:
- Microglia and their polarization state are crucial for initiating SD.
- M2a microglial polarization, associated with reduced inflammation and increased anti-inflammatory cytokines, confers protection against SD.
- Targeting microglial polarization, potentially via IL-11, represents a promising avenue for migraine prevention and treatment.
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