Autophagy may protect the brain against prolonged consequences of headache attacks: A narrative/hypothesis review

Michal Fila1, Elzbieta Pawlowska2, Joanna Szczepanska2

  • 1Department of Developmental Neurology and Epileptology, Polish Mother's Memorial Hospital Research Institute, Lodz, Poland.

Headache
|August 28, 2023
PubMed
Abstract

Insights

Migraine attacks may impair microglial autophagy, leading to increased brain-derived neurotrophic factor (BDNF) release. This can then stimulate neuronal autophagy to clear cellular debris, potentially preventing prolonged headache effects.

Area of Science:

  • Neuroscience
  • Cellular Biology
  • Molecular Medicine

Background:

  • The interplay between neurons and microglia is crucial in migraine pathogenesis.
  • Migraine triggers can lead to adenosine triphosphate (ATP)-mediated signaling, activating purinergic receptor P2X7 (P2X7R) on microglia.
  • P2X7R activation impairs lysosomal function and indicates autophagy dysfunction in microglia.

Purpose of the Study:

  • To investigate the role and potential of autophagy in the pathogenesis of migraine.
  • To elucidate the mechanisms by which migraine affects cellular processes in neurons and microglia.

Main Methods:

  • A literature search was performed using keywords: migraine, autophagy, microglia, and degradation.
  • Analysis of signaling pathways involving purinergic receptors (P2X4R, P2X7R), ATP, calcium (Ca2+), and brain-derived neurotrophic factor (BDNF).

Main Results:

  • Impaired microglial autophagy can lead to secretory autophagy, releasing BDNF.
  • BDNF release is also mediated by P2X7R and P2X4R activation.
  • Migraine signaling may impair degradative autophagy in microglia while stimulating secretory autophagy, and induce degradative autophagy in neurons to clear oxidative stress-induced debris.

Conclusions:

  • Migraine-related events differentially affect degradative autophagy in microglia and neurons.
  • These distinct effects on autophagy may serve a protective role, preventing sustained brain alterations during headache attacks.

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