Literature DB >> 35760098

From spreading depolarization to epilepsy with neuroinflammation: The role of CGRP in cortex.

Fátima Gimeno-Ferrer1, Annett Eitner2, Reinhard Bauer3, Alfred Lehmenkühler4, Marie-Luise Edenhofer5, Michaela Kress5, Hans-Georg Schaible1, Frank Richter6.   

Abstract

CGRP release plays a major role in migraine pain by activating the trigeminal pain pathways. Here we explored putative additional effects of CGRP on cortical circuits and investigated whether CGRP affects cortical excitability, cortical spreading depolarization (CSD), a phenomenon associated with migraine aura, blood-brain-barrier (BBB) and microglial morphology. We used immunohistochemistry to localize CGRP and the CGRP receptor (CGRP-R) in native cortex and evaluated morphology of microglia and integrity of the BBB after exposure to CGRP. In anesthetized rats we applied CGRP and the CGRP-R antagonist BIBN4096BS locally to the exposed cortex and monitored the spontaneous electrocorticogram and CSDs evoked by remote KCl pressure microinjection. In mouse brain slices CGRP effects on neuronal activity were explored by multielectrode array. CGRP immunoreactivity was detectable in intracortical vessels, and all cortical neurons showed CGRP-R immunoreactivity. In rat cortex in vivo, topical CGRP induced periods of epileptiform discharges, however, also dose-dependently reduced CSD amplitudes and propagation velocity. BIBN4096BS prevented these effects. CGRP evoked synchronized bursting activity in mouse cortical but not in cerebellar slices. Topical application of CGRP to rat cortex induced plasma extravasation and this was associated with reduced ramification of microglial cells. From these findings we conclude that CGRP induces a pathophysiological state in the cortex, consisting in neuronal hyperexcitability and neuroinflammation. Thus, CGRP may have a pronounced impact on brain functions during migraine episodes supporting the benefit of CGRP antagonists for clinical use. However, increased cortical CGRP may end the CSD-induced aura phase of migraine.
Copyright © 2022. Published by Elsevier Inc.

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Keywords:  Blood-brain-barrier; Calcitonin gene-related peptide; Cortical spreading depolarization; Epilepsy; Microglia; Migraine

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Year:  2022        PMID: 35760098     DOI: 10.1016/j.expneurol.2022.114152

Source DB:  PubMed          Journal:  Exp Neurol        ISSN: 0014-4886            Impact factor:   5.620


  1 in total

1.  The Effects of Six Weeks of Endurance Training and CGRP Inhibition on Nrf2 and AKT Expression in the Hippocampal Tissue of Male Wistar Rats.

Authors:  Maryam Zare; Shila Nayebifar; Soheil Aminizadeh; Majid Vahidian-Rezazadeh
Journal:  Mediators Inflamm       Date:  2022-08-31       Impact factor: 4.529

  1 in total

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