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Updated: Aug 23, 2025

Dural Stimulation and Periorbital von Frey Testing in Mice As a Preclinical Model of Headache
Published on: July 29, 2021
MNK1/2 contributes to periorbital hypersensitivity and hyperalgesic priming in preclinical migraine models
Jacob Lackovic1, Theodore J Price1, Gregory Dussor1
1Department of Neuroscience, The Center for Advanced Pain Studies, The University of Texas at Dallas, Richardson, TX 75080, USA.
Abstract:
Migraine is thought to involve sensitization of the trigeminal nociceptive system. In preclinical pain models, activation of MNK-eIF4E signalling contributes to nociceptor sensitization and the development of persistent pain. Despite these observations, the role of MNK signalling in migraine remains unclear. Here, we investigate whether activation of MNK contributes to hypersensitivity in two rodent models of migraine. Female and male wild-type (WT) and MNK1 knock-out mice were subjected to repeated restraint stress or a dural injection of interleukin-6 (IL-6) and tested for periorbital hypersensitivity and grimacing. Upon returning to baseline thresholds, stressed mice were administered a low dose of the nitric oxide donor sodium nitroprusside and mice previously injected with IL-6 were given a second dural injection of pH 7.0 to test for hyperalgesic priming. MNK1 knock-out mice were significantly less hypersensitive than the WT following dural IL-6 and did not prime to pH 7.0 or sodium nitroprusside. Furthermore, treatment with the selective MNK inhibitor, eFT508, in WT mice prevented hypersensitivity caused by dural IL-6 or pH 7.0. Together, these results implicate MNK-eIF4E signalling in the development of pain originating from the dura and strongly suggest that targeting MNK inhibition may have significant therapeutic potential as a treatment for migraine.
Insights
Migraine pain may involve MNK-eIF4E signaling. Inhibiting MNK reduced hypersensitivity in rodent migraine models, suggesting MNK inhibitors could be effective migraine treatments.
Area of Science:
- Neuroscience
- Pain Research
- Molecular Biology
Background:
- Migraine pathophysiology involves trigeminal nociceptive system sensitization.
- MNK-eIF4E signaling activation contributes to nociceptor sensitization and persistent pain in preclinical models.
- The specific role of MNK signaling in migraine remains largely uncharacterized.
Purpose of the Study:
- To investigate the contribution of MNK activation to hypersensitivity in rodent migraine models.
- To explore the therapeutic potential of MNK inhibition for migraine treatment.
Main Methods:
- Utilized wild-type (WT) and MNK1 knock-out mice in restraint stress and dural interleukin-6 (IL-6) injection models of migraine.
- Assessed periorbital hypersensitivity and grimacing.
- Evaluated hyperalgesic priming using sodium nitroprusside and pH 7.0 challenges.
- Administered the selective MNK inhibitor eFT508 to WT mice.
Main Results:
- MNK1 knock-out mice exhibited significantly reduced hypersensitivity to dural IL-6 and did not show hyperalgesic priming.
- Treatment with eFT508 prevented hypersensitivity induced by dural IL-6 and pH 7.0 in WT mice.
- These findings implicate MNK-eIF4E signaling in dural pain development.
Conclusions:
- MNK-eIF4E signaling plays a crucial role in the development of pain originating from the dura.
- Targeting MNK inhibition presents a promising therapeutic strategy for migraine treatment.
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