Demethylating drugs as novel analgesics for cancer pain

Chi T Viet1,2, Dongmin Dang1,2, Yi Ye1,2

  • 1Department of Oral Maxillofacial Surgery, New York University, New York, NY, United States.

Abstract

Insights

Demethylating drugs reduce oral cancer pain by re-expressing the mu-opioid receptor (OPRM1). This epigenetic therapy increases endogenous opioid secretion, offering a novel analgesic strategy for cancer pain management.

Area of Science:

  • Oncology
  • Neuroscience
  • Pharmacology

Background:

  • Oral cancer pain is a significant challenge, often inadequately managed by current therapies.
  • The mu-opioid receptor (OPRM1) pathway is crucial for pain processing.
  • Epigenetic modifications, such as DNA methylation, can alter gene expression in cancer.

Purpose of the Study:

  • To investigate the analgesic potential of demethylating drugs in oral cancer pain.
  • To determine if demethylating drugs re-express the mu-opioid receptor (OPRM1) and mediate antinociception.
  • To explore the clinical relevance of OPRM1 methylation in oral cancer patients.

Main Methods:

  • Utilized a mouse model of oral cancer to assess antinociceptive effects of demethylating drugs.
  • Employed adenoviral transduction to re-express OPRM1 in cancer cells and neurons.
  • Quantified OPRM1 methylation in patient tissues: painful oral cancer, normal contralateral tissue, and oral dysplasia.

Main Results:

  • OPRM1 was found to be methylated in oral cancer tissues but not in normal or dysplastic tissues.
  • Demethylating drug treatment in mice produced significant mechanical and thermal antinociception, correlating with OPRM1 re-expression.
  • Re-expression of OPRM1 in cancer cells led to naloxone-reversible antinociception and increased beta-endorphin secretion.

Conclusions:

  • DNA methylation regulates pain in oral cancer by silencing OPRM1.
  • Re-expression of OPRM1 in cancer cells induces analgesia via endogenous opioid release.
  • Demethylating drugs represent a promising therapeutic avenue for managing oral cancer pain by targeting the OPRM1 pathway.

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