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Antinociceptive Effects of Exogenous and Endogenous Carbon Monoxide in the Nitroglycerin-Induced Migraine Model in Rats.

Created on 12 Sep 2026

Authors

Anton Ananev, Karina Gilizhdinova, Dinara Nurmieva, Olga Yakovleva, Kseniia Shaidullova, Guzel Sitdikova

Published in

International journal of molecular sciences. Volume 27. Issue 10. May 13, 2026. Epub May 13, 2026.

Abstract

Migraines are a common neurological disorder that significantly reduces quality of life. The sensitization of trigeminal afferents is a key factor in the development of the pain syndrome associated with migraine. Carbon monoxide (CO) is produced endogenously by heme oxygenase (HO), widely expressed in structures involved in pain processing. In our study, the role of CO in an acute and chronic nitroglycerin (NTG)-induced rat migraine model was investigated using behavioral, electrophysiological, biochemical and histological methods. The repeated administration of a CO donor (CORM-2) or an HO-1 inducer (CoPP) decreased mechanical hypersensitivity and photophobia of rats in the NTG-induced migraine model. Additionally, CORM-2 and CoPP prevented an increase in trigeminal afferent excitability, which was evaluated by the frequency of action potentials in response to KCl application. Preliminary CORM-2 or CoPP injections promoted mast cell stability in the meninges and prevented NTG-induced CGRP elevation in blood plasma. Our results suggest that exogenously or endogenously produced CO has a protective potential in preventing inflammation and the sensitization of peripheral trigeminal afferents, the activity of which underlies the occurrence of pain in migraine. This could contribute to the development of new approaches for migraine prevention.

PMID:
42196326
Bibliographic data and abstract were imported from PubMed on 12 Sep 2026.

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