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Published on: May 16, 2022
Functional interactions between transient receptor potential M8 and transient receptor potential V1 in the trigeminal
Yohei Kayama1, Mamoru Shibata1, Tsubasa Takizawa1
11 Department of Neurology, Keio University School of Medicine, Tokyo, Japan.
Abstract:
Background Recent genome-wide association studies have identified transient receptor potential M8 ( TRPM8) as a migraine susceptibility gene. TRPM8 is a nonselective cation channel that mediates cool perception. However, its precise role in migraine pathophysiology is elusive. Transient receptor potential V1 (TRPV1) is a nonselective cation channel activated by noxious heat. Both TRPM8 and TRPV1 are expressed in trigeminal ganglion (TG) neurons. Methods We investigated the functional roles of TRPM8 and TRPV1 in a meningeal inflammation-based migraine model by measuring the effects of facial TRPM8 activation on thermal allodynia and assessing receptor coexpression changes in TG neurons. We performed retrograde tracer labeling to identify TG neurons innervating the face and dura. Results We found that pharmacological TRPM8 activation reversed the meningeal inflammation-induced lowering of the facial heat pain threshold, an effect abolished by genetic ablation of TRPM8. No significant changes in the heat pain threshold were seen in sham-operated animals. Meningeal inflammation caused dynamic alterations in TRPM8/TRPV1 coexpression patterns in TG neurons, and colocalization was most pronounced when the ameliorating effect of TRPM8 activation on thermal allodynia was maximal. Our tracer assay disclosed the presence of dura-innervating TG neurons sending collaterals to the face. Approximately half of them were TRPV1-positive. We also demonstrated functional inhibition of TRPV1 by TRPM8 in a cell-based assay using c-Jun N-terminal kinase phosphorylation as a surrogate marker. Conclusions Our findings provide a plausible mechanism to explain how facial TRPM8 activation can relieve migraine by suppressing TRPV1 activity. Facial TRPM8 appears to be a promising therapeutic target for migraine.
Insights
Activating facial transient receptor potential M8 (TRPM8) channels relieved migraine-like pain by suppressing TRPV1 activity. This suggests TRPM8 is a potential therapeutic target for migraine relief.
Area of Science:
- Neuroscience
- Pain Research
- Molecular Biology
Background:
- Genome-wide association studies link transient receptor potential M8 (TRPM8) to migraine susceptibility.
- TRPM8, a cool-sensing cation channel, and TRPV1, a heat-activated cation channel, are expressed in trigeminal ganglion (TG) neurons.
- The exact role of TRPM8 in migraine pathophysiology remains unclear.
Purpose of the Study:
- To investigate the functional roles of TRPM8 and TRPV1 in a meningeal inflammation migraine model.
- To assess the effects of facial TRPM8 activation on thermal allodynia.
- To examine changes in TRPM8/TRPV1 coexpression in TG neurons.
Main Methods:
- Utilized a meningeal inflammation-based migraine model.
- Administered pharmacological TRPM8 activation and assessed thermal allodynia.
- Employed retrograde tracer labeling to map TG neuron innervation of the face and dura.
- Analyzed TRPM8/TRPV1 coexpression patterns and performed cell-based assays.
Main Results:
- Pharmacological TRPM8 activation reversed inflammation-induced thermal hypersensitivity, an effect dependent on genetic TRPM8.
- Meningeal inflammation altered TRPM8/TRPV1 coexpression in TG neurons, peaking with maximal TRPM8 therapeutic effects.
- Dura-innervating TG neurons were found to project collaterals to the face, with about half expressing TRPV1.
- TRPM8 functionally inhibited TRPV1 activity.
Conclusions:
- Facial TRPM8 activation alleviates migraine-like pain by inhibiting TRPV1 activity, presenting a novel therapeutic mechanism.
- Facial TRPM8 represents a promising therapeutic target for migraine treatment.
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