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Oral Cancer Pain Includes Thermal Allodynia That May Be Attenuated by Chronic Alcohol Consumption
Cara B Gonzales1,2, Jorge J De La Chapa1, Amol M Patwardhan3
1Department of Comprehensive Dentistry, UT Health San Antonio, School of Dentistry, San Antonio, TX 78229, USA.
Background:
Oral cancer is one of the most painful cancer types, and is often refractory to existing analgesics. Oral cancer patients frequently develop a tolerance to opioids, the mainstay of current cancer pain therapy, leaving them with limited therapeutic options. Thus, there is a great need to identify molecular mechanisms driving oral cancer pain in an effort to develop new analgesics. Previous reports demonstrate that oral cancer patients experience intense mechanical pain and pain in function. To date, no studies have examined thermal pain in oral cancer patients or the role that alcohol consumption plays in oral cancer pain. This study aims to evaluate patient-reported pain levels and thermal allodynia, potential molecular mechanisms mediating thermal allodynia, and the effects of alcohol consumption on patient-perceived pain.
Methods:
This study evaluated human oral squamous cell carcinoma (OSCC) cell lines for their ability to activate thermosensitive channels in vitro and validated these findings in a rat model of orofacial pain. Patient-reported pain in a south Texas OSCC cohort (n = 27) was examined using a visual analog scale (VAS). Covariant analysis examined variables such as tobacco and alcohol consumption, ethnicity, gender, and cancer stage.
Results:
We determined that OSCC secretes factors that stimulate both the Transient Receptor Potential Ankyrin type 1 channel (TRPA1; noxious cold sensor) and the Transient Receptor Potential Vanilloid type 1 channel (TRPV1; noxious heat sensor) in vitro and that OSCC-secreted factors sensitize TRPV1 nociceptors in vivo. These findings were validated in this cohort, in which allodynia to cold and heat were reported. Notably, subjects that reported regular alcohol consumption also reported lower pain scores for every type of pain tested, with significantly reduced cold-induced pain, aching pain, and burning pain.
Conclusion:
Oral cancer patients experience multiple types of cancer pain, including thermal allodynia. Alcohol consumption correlates with reduced OSCC pain and reduced thermal allodynia, which may be mediated by TRPA1 and TRPV1. Hence, reduced pain in these patients may contribute to a delay in seeking care, and thus a delay in early detection and treatment.
Insights
Oral cancer pain, including thermal allodynia, is common. Alcohol consumption is linked to lower pain scores, potentially through TRPA1 and TRPV1 channels, but may delay treatment seeking.
Area of Science:
- Oncology
- Pain Research
- Molecular Biology
Background:
- Oral cancer is a highly painful condition often resistant to standard analgesics.
- Opioid tolerance is common in oral cancer patients, necessitating novel pain management strategies.
- Understanding the molecular basis of oral cancer pain, including thermal allodynia, is crucial for developing new treatments.
Purpose of the Study:
- To evaluate patient-reported pain levels and thermal allodynia in oral cancer.
- To investigate molecular mechanisms underlying thermal allodynia in oral cancer.
- To determine the effect of alcohol consumption on pain perception in oral cancer patients.
Main Methods:
- Oral squamous cell carcinoma (OSCC) cell lines were used to assess activation of thermosensitive channels (TRPA1 and TRPV1) in vitro.
- A rat model of orofacial pain was employed to validate in vitro findings.
- A cohort of 27 oral cancer patients reported pain levels using a visual analog scale (VAS), with analyses considering alcohol and tobacco use, ethnicity, gender, and cancer stage.
Main Results:
- OSCC secretes factors that activate TRPA1 (cold sensor) and TRPV1 (heat sensor) channels.
- OSCC-secreted factors sensitize TRPV1 nociceptors in vivo, leading to thermal allodynia (pain from non-painful stimuli).
- Patients reporting regular alcohol consumption experienced lower pain scores, particularly for cold-induced and burning pain, and reduced thermal allodynia.
Conclusions:
- Oral cancer patients suffer from various pain types, including thermal allodynia.
- Alcohol consumption is associated with decreased pain and thermal allodynia in OSCC patients, potentially mediated by TRPA1 and TRPV1.
- Reduced pain perception in alcohol-consuming patients might delay medical care, impacting early cancer detection and treatment.
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