Effects of kynurenic acid analogue 1 (KYNA-A1) in nitroglycerin-induced hyperalgesia: Targets and anti-migraine mechanisms
Author(s) -
Rosaria Greco,
Chiara Demartini,
Anna Maria Zanaboni,
Elisa Redavide,
Selena Pampalone,
J. Toldi,
Ferenc Fülöp,
Fabio Blandini,
Giuseppe Nappi,
Giorgio Sandrini,
László Vécsei,
Cristina Tassorelli
Publication year - 2016
Publication title -
cephalalgia
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.57
H-Index - 125
eISSN - 1468-2982
pISSN - 0333-1024
DOI - 10.1177/0333102416678000
Subject(s) - kynurenic acid , calcitonin gene related peptide , hyperalgesia , medicine , nociception , pharmacology , migraine , spinal trigeminal nucleus , glutamate receptor , anesthesia , neuropeptide , receptor
Background Trigeminal sensitization represents a major mechanism underlying migraine attacks and their recurrence. Nitroglycerin (NTG) administration provokes spontaneous migraine-like headaches and in rat, an increased sensitivity to the formalin test. Kynurenic acid (KYNA), an endogenous regulator of glutamate activity and its analogues attenuate NTG-induced neuronal activation in the nucleus trigeminalis caudalis (NTC). The anti-hyperalgesic effect of KYNA analogue 1 (KYNA-A1) was investigated on animal models specific for migraine pain.Aim Rats made hyperalgesic by NTG administration underwent the plantar or orofacial formalin tests. The effect of KYNA-A1 was evaluated in terms of nocifensive behavior and of neuronal nitric oxide synthase (nNOS), calcitonin gene-related peptide (CGRP) and cytokines expression in areas involved in trigeminal nociception.Results KYNA-A1 abolished NTG-induced hyperalgesia in both pain models; NTG alone or associated to formalin injection induced an increased mRNA expression of CGRP, nNOS and cytokines in the trigeminal ganglia and central areas, which was reduced by KYNA-A1. Additionally, NTG caused a significant increase in nNOS immunoreactivity in the NTC, which was prevented by KYNA-A1.Conclusion Glutamate activity is likely involved in mediating hyperalgesia in an animal model specific for migraine. Its inhibition by means of a KYNA analogue modulates nNOS, CGRP and cytokines expression at peripheral and central levels.
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