Smooth muscle ATP-sensitive potassium channels mediate migraine-relevant hypersensitivity in mouse models

Author:

Christensen Sarah L1ORCID,Rasmussen Rikke H1ORCID,Cour Sanne La1,Ernstsen Charlotte1ORCID,Hansen Thomas F12,Kogelman Lisette JA1ORCID,Lauritzen Sabrina P1,Guzaite Gintare3,Styrishave Bjarne3,Janfelt Christian3,Christensen Søren T4ORCID,Aziz Qadeer5ORCID,Tinker Andrew5,Jansen-Olesen Inger1ORCID,Olesen Jes1,Kristensen David M167

Affiliation:

1. Danish Headache Center, Department of Neurology, Rigshospitalet, University of Copenhagen, Denmark

2. Novo Nordisk Foundation Center for Protein Research, University of Copenhagen, Denmark

3. Department of Pharmacy, Faculty of Health and Medical Sciences, University of Copenhagen, Denmark

4. Department of Biology, Section of Cell Biology and Physiology, University of Copenhagen, Denmark

5. The Heart Centre, Queen Mary University of London, William Harvey Research Institute, Queen Mary University of London, UK

6. Univ Rennes, Inserm, EHESP, Irset (Institut de recherche en santé, environnement et travail) - UMR_S 1085, Rennes, France

7. Department of Biology, University of Copenhagen, Copenhagen, Denmark

Abstract

Background Opening of KATP channels by systemic levcromakalim treatment triggers attacks in migraine patients and hypersensitivity to von Frey stimulation in a mouse model. Blocking of these channels is effective in several preclinical migraine models. It is unknown in what tissue and cell type KATP-induced migraine attacks are initiated and which KATP channel subtype is targeted. Methods In mouse models, we administered levcromakalim intracerebroventricularly, intraperitoneally and intraplantarily and compared the nociceptive responses by von Frey and hotplate tests. Mice with a conditional loss-of-function mutation in the smooth muscle KATP channel subunit Kir6.1 were given levcromakalim and GTN and examined with von Frey filaments. Arteries were tested for their ability to dilate ex vivo. mRNA expression, western blotting and immunohistochemical stainings were made to identify relevant target tissue for migraine induced by KATP channel opening. Results Systemic administration of levcromakalim induced hypersensitivity but central and local administration provided antinociception respectively no effect. The Kir6.1 smooth muscle knockout mouse was protected from both GTN and levcromakalim induced hypersensitivity, and their arteries had impaired dilatory response to the latter. mRNA and protein expression studies showed that trigeminal ganglia did not have significant KATP channel expression of any subtype, whereas brain arteries and dura mater primarily expressed the Kir6.1 + SUR2B subtype. Conclusion Hypersensitivity provoked by GTN and levcromakalim in mice is dependent on functional smooth muscle KATP channels of extracerebral origin. These results suggest a vascular contribution to hypersensitivity induced by migraine triggers.

Funder

Candys Foundation

Læge Sofus Carl Emil Friis og Hustru Olga Doris Friis' Legat

Publisher

SAGE Publications

Subject

Neurology (clinical),General Medicine

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