Non-invasive dural stimulation in mice: A novel preclinical model of migraine

Author:

Burgos-Vega Carolina Christina1,Quigley Lilyana D1,Trevisan dos Santos Gabriela2,Yan Flora1,Asiedu Marina1,Jacobs Blaine1,Motina Marina1,Safdar Nida1,Yousuf Hayyan1,Avona Amanda1,Price Theodore John1,Dussor Greg1

Affiliation:

1. School of Behavioral and Brain Sciences, The University of Texas at Dallas, Richardson, TX, USA

2. Universidade Federal de Santa Maria, Departamento de Fisiologia e Farmacologia, Santa Maria, RS, Brasil

Abstract

Background Migraine is characterized by a collection of neurological symptoms in the absence of injury or damage. However, several common preclinical migraine models require significant damage to the skull to stimulate the dura mater, the likely source of afferent signaling leading to head pain. The goal of this study was to determine whether dural stimulation can be performed in mice using an injection that does not cause injury or damage. Methods Using mice, injections of stimuli were administered to the dura mater through the soft tissue at the intersection between the lambdoidal and sagittal sutures. This technique did not require a permanent cannula nor did it cause damage to the skull or dura. Following injection of noxious stimuli, migraine-like behaviors were measured including cutaneous allodynia and facial grimace. The retrograde tracer fluorogold was applied onto the dura using the same injection technique to label trigeminal ganglion cell bodies, which were then testing in vitro using patch-clamp electrophysiology. Results Dural injection of allyl-isothiocyanate, low pH, interleukin-6, or inflammatory soup but not vehicles, led to cephalic/extracephalic allodynia. Facial grimace responses were also observed with allyl-isothiocyanate, pH 6.0, and interleukin-6. Stimulation with interleukin-6 causes priming to normally subthreshold pH 7.0 stimulation of the dura following resolution of the initial interleukin-6 behavior. Systemic injection of sumatriptan at the time of dural stimulation with inflammatory soup decreased the resulting cutaneous hypersensitivity. Trigeminal ganglion cell bodies retrogradely labeled from the dura had low pH-evoked currents similar to those generated by acid-sensing ion channels. Conclusion Non-invasive dural stimulation in mice can be used as a model of migraine in the absence of injury.

Funder

Migraine Research Foundation

National Institute of Neurological Disorders and Stroke

Publisher

SAGE Publications

Subject

Neurology (clinical),General Medicine

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