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March 13, 2026Cell Reports Medicine2 citationsOpen Access

TRPM3 mediates spontaneous pain and mechanical allodynia in a mouse model of chronic orofacial neuropathy

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KDKristof DeseureIDIlhem DallaliSPSilvia Pinto

Key Points

  • The aim is to investigate the role of TRPM3 in the development of neuropathic pain following trigeminal nerve injury.
  • Utilized a chronic constriction injury model on the infraorbital nerve in mice.
  • Conducted longitudinal RNA sequencing analysis on trigeminal ganglia.
  • Administered TRPM3 antagonists to assess their effects on pain behaviors.
  • Wild-type mice showed spontaneous pain and mechanical allodynia for up to 6 weeks post-injury.
  • Trpm3-/- mice did not exhibit these pain symptoms.
  • TRPM3 antagonists effectively reversed pain and allodynia, whereas TRPV1 antagonists did not.

Abstract

Trigeminal nerve injury can lead to chronic and difficult-to-treat orofacial neuropathic pain. Here, we uncover a key role for the cation channel TRPM3 in the chronic constriction injury of the infraorbital nerve (IoN-CCI) mouse model of trigeminal neuropathic pain. Wild-type (WT) mice develop spontaneous pain and mechanical allodynia for up to 6 weeks following IoN-CCI, whereas Trpm3-/- mice do not develop such symptoms. Using longitudinal RNA sequencing (RNA-seq) analysis, we obtain a detailed time course of transcriptome alterations in trigeminal ganglia during progression of the IoN-CCI model; notably, gene expression regulation is not different between WT and Trpm3-/- mice. Two structurally distinct TRPM3 antagonists, primidone and isosakuranetin, effectively reverse spontaneous pain and mechanical allodynia, whereas mavatrep, a potent TRPV1 antagonist, is without analgesic effect. These data indicate that TRPM3 is essential for ongoing pain and allodynia following trigeminal nerve injury, making it a potential target for treating trigeminally mediated neuropathic pain.

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Cite This Study

Deseure et al. (2026) studied this question.

synapsesocial.com/papers/69b3aaa802a1e69014ccb670https://doi.org/10.1016/j.xcrm.2026.102645
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