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Updated: Apr 27, 2026

Continuous Fluorescence-Based Endonuclease-Coupled DNA Methylation Assay to Screen for DNA Methyltransferase Inhibitors
Published on: August 5, 2022
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.
Purpose:
In this study, we evaluated the analgesic potential of demethylating drugs on oral cancer pain. Although demethylating drugs could affect expression of many genes, we focused on the mu-opioid receptor (OPRM1) gene pathway, because of its role in pain processing. We determined the antinociceptive effect of OPRM1 re-expression in a mouse oral cancer model.
Experimental Design:
Using a mouse oral cancer model, we determined whether demethylating drugs produced antinociception through re-expression of OPRM1. We then re-expressed OPRM1 with adenoviral transduction and determined if, and by what mechanism, OPRM1 re-expression produced antinociception. To determine the clinical significance of OPRM1 on cancer pain, we quantified OPRM1 methylation in painful cancer tissues and nonpainful contralateral normal tissues of patients with oral cancer, and nonpainful dysplastic tissues of patients with oral dysplasia.
Results:
We demonstrated that OPRM1 was methylated in cancer tissue, but not normal tissue, of patients with oral cancer, and not in dysplastic tissues from patients with oral dysplasia. Treatment with demethylating drugs resulted in mechanical and thermal antinociception in the mouse cancer model. This behavioral change correlated with OPRM1 re-expression in the cancer and associated neurons. Similarly, adenoviral-mediated OPRM1 re-expression on cancer cells resulted in naloxone-reversible antinociception. OPRM1 re-expression on oral cancer cells in vitro increased β-endorphin secretion from the cancer, and decreased activation of neurons that were treated with cancer supernatant.
Conclusion:
Our study establishes the regulatory role of methylation in cancer pain. OPRM1 re-expression in cancer cells produces antinociception through cancer-mediated endogenous opioid secretion. Demethylating drugs have an analgesic effect that involves OPRM1.
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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