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Oxytocin shortens spreading depolarization-induced periorbital allodynia. | LitMetric

Oxytocin shortens spreading depolarization-induced periorbital allodynia.

J Headache Pain

Neurovascular Research Unit, Department of Neurology, Massachusetts General Hospital, 149 13th Street, Charlestown, Boston MA, 02129, USA.

Published: September 2024

AI Article Synopsis

  • The study investigates the role of cortical spreading depolarization (SD) in triggering migraine-related pain by focusing on a specific brain region, the paraventricular nucleus (PVN), and its connection to oxytocin signaling.* -
  • Using a genetically modified mouse model, researchers found that opto-SD significantly increased markers of neuronal activity in the PVN, indicating that this area is activated during migraine-like pain responses.* -
  • Treatment with an oxytocin receptor antagonist reduced pain behavior induced by opto-SD, suggesting that oxytocin plays a role in modulating trigeminal pain linked to migraines.*

Article Abstract

Background: Migraine is among the most prevalent and burdensome neurological disorders in the United States based on disability-adjusted life years. Cortical spreading depolarization (SD) is the most likely electrophysiological cause of migraine aura and may be linked to trigeminal nociception. We previously demonstrated, using a minimally invasive optogenetic approach of SD induction (opto-SD), that opto-SD triggers acute periorbital mechanical allodynia that is reversed by 5HT receptor agonists, supporting SD-induced activation of migraine-relevant trigeminal pain pathways in mice. Recent data highlight hypothalamic neural circuits in migraine, and SD may activate hypothalamic neurons. Furthermore, neuroanatomical, electrophysiological, and behavioral data suggest a homeostatic analgesic function of hypothalamic neuropeptide hormone, oxytocin. We, therefore, examined the role of hypothalamic paraventricular nucleus (PVN) and oxytocinergic (OXT) signaling in opto-SD-induced trigeminal pain behavior.

Methods: We induced a single opto-SD in adult male and female Thy1-ChR2-YFP transgenic mice and quantified fos immunolabeling in the PVN and supraoptic nucleus (SON) compared with sham controls. Oxytocin expression was also measured in fos-positive neurons in the PVN. Periorbital mechanical allodynia was tested after treatment with selective OXT receptor antagonist L-368,899 (5 to 25 mg/kg i.p.) or vehicle at 1, 2, and 4 h after opto-SD or sham stimulation using von Frey monofilaments.

Results: Opto-SD significantly increased the number of fos immunoreactive cells in the PVN and SON as compared to sham stimulation (p < 0.001, p = 0.018, respectively). A subpopulation of fos-positive neurons also stained positive for oxytocin. Opto-SD evoked periorbital mechanical allodynia 1 h after SD (p = 0.001 vs. sham), which recovered quickly within 2 h (p = 0.638). OXT receptor antagonist L-368,899 dose-dependently prolonged SD-induced periorbital allodynia (p < 0.001). L-368,899 did not affect mechanical thresholds in the absence of opto-SD.

Conclusions: These data support an SD-induced activation of PVN neurons and a role for endogenous OXT in alleviating acute SD-induced trigeminal allodynia by shortening its duration.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11406737PMC
http://dx.doi.org/10.1186/s10194-024-01855-7DOI Listing

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