Potential Molecular Targets for Treating Neuropathic Orofacial Pain Based on Current Findings in Animal Models

Yukinori Nagakura1, Shogo Nagaoka2, Takahiro Kurose2

  • 1School of Pharmacy at Fukuoka, International University of Health and Welfare, 137-1 Enokizu, Okawa-city, Fukuoka 831-8501, Japan.

Insights

Identifying molecular targets in animal models is key to developing new treatments for neuropathic orofacial pain. Therapies targeting these molecules, like calcitonin gene-related peptide receptor antagonists, show promise for clinical trials.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Pain Research

Background:

  • Neuropathic orofacial pain, including post-traumatic trigeminal neuropathic pain (PTNP) and primary trigeminal neuralgia (PTN), significantly impacts quality of life.
  • Current understanding of orofacial pain pathophysiology relies heavily on preclinical animal models that mimic disease etiology.

Purpose of the Study:

  • To review potential molecular targets for neuropathic orofacial pain based on animal model findings.
  • To identify therapeutic strategies for developing improved orofacial pain treatments.

Main Methods:

  • Analysis of preclinical research on animal models of PTNP and PTN.
  • Investigation of biological processes and molecular alterations in the trigeminal pathway following nerve injury or compression.

Main Results:

  • Key biological processes implicated include inflammation, neuropeptide signaling, axonal dysfunction, and neuroglial interactions.
  • Altered molecular expressions in the trigeminal pathway suggest potential therapeutic targets.
  • Therapeutic candidates targeting these molecules, such as calcitonin gene-related peptide receptor antagonists, reduce pain behaviors in animal models.

Conclusions:

  • Molecular targets identified in animal models offer promising avenues for novel neuropathic orofacial pain therapies.
  • Therapeutic candidates demonstrating efficacy in preclinical studies warrant clinical evaluation for human application.