Meningeal KATP channels contribute to behavioral responses in preclinical migraine models

偏头痛 格列本脲 脑膜 医学 苏马曲普坦 药理学 钾通道开放器 钾通道 内分泌学 内科学 麻醉 受体 病理 兴奋剂 糖尿病
作者
Hao‐Ruei Mei,M.N. Lam,Shrivatsa Ravindra Kulkarni,Håkan Ashina,Messoud Ashina,Gregory Dussor
出处
期刊:Pain [Ovid Technologies (Wolters Kluwer)]
卷期号:166 (2): 398-407 被引量:4
标识
DOI:10.1097/j.pain.0000000000003385
摘要

Abstract Human experimental studies have shown that levcromakalim, an ATP-sensitive potassium (K ATP ) channel opener, induces migraine attacks in people with migraine but not in healthy volunteers. However, the exact site of action for K ATP channels in migraine pathophysiology remains unclear. This study investigates the role of these channels in the meninges in eliciting behavioral hypersensitivity responses in mice. The effects of K ATP channel signaling were assessed using preclinical migraine models induced by repetitive stress or dural stimulation. Prolactin, CGRP, sodium nitroprusside (SNP), and K ATP channel openers or blockers were administered systemically or onto the dura of mice followed by behavioral testing using periorbital von Frey or facial grimace measurements. Repetitive stress sensitized mice to a normally subthreshold systemic dose of levcromakalim. The K ATP blocker glibenclamide significantly reduced responses to systemic SNP following repetitive stress. In naive mice, direct dural application of levcromakalim or SNP elicited periorbital hypersensitivity. Responses to dural levcromakalim were inhibited by coinjection with glibenclamide or sumatriptan. By contrast, injection of levcromakalim in the periorbital skin did not induce hypersensitivity. Moreover, repetitive stress sensitized mice to dural injection of normally subthreshold doses of levcromakalim or SNP. Finally, dural coinjection of glibenclamide inhibited periorbital hypersensitivity induced by CGRP or prolactin in female mice. These studies demonstrate that the meninges can be one site of action for the migraine-triggering effects of K ATP channel openers. They also show that NO donors, CGRP, and prolactin can produce behavioral hypersensitivity through opening of K ATP channels in the meninges.
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