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Teasing Out the Interplay Between Natural Killer Cells and Nociceptor Neurons
Published on: June 30, 2022
OPIOID-EXPRESSING B CELLS SILENCE TUMOR-INFILTRATING NOCICEPTOR NEURONS
Sebastien Talbot1,2, Tuany Eichwald3, Maryam Ahmadi4
1Department of Biomedical and Molecular Sciences, Queen's University. Kingston, Canada.
Abstract:
Nociceptor neurons, which transmit pain signals, also regulate immunity by releasing immunomodulatory neuropeptides. In head and neck squamous cell carcinoma (HNSCC) and melanoma, our research has shown that tumor-innervating nociceptors modulate anti-tumor immunity through the release of calcitonin gene-related peptide (CGRP) and its interaction with receptor activity-modifying protein 1 (RAMP1). A retrospective analysis of clinical charts from HNSCC patients revealed that higher pain levels correlated with increased opioid use, perineural invasion, and decreased B-cell infiltration-factors associated with poorer survival outcomes. In silico single-cell RNA sequencing demonstrated that opioid use in HNSCC patients downregulates nociceptin/orphanin FQ (N/OFQ), an endogenous ligand for opioid receptor-like-1 (OPRL1). We identified B cells as the primary source of N/OFQ and observed that high expression of either Pnoc or Oprl1 correlates with better survival in both melanoma and HNSCC. In a mouse model of oral squamous cell carcinoma (oSCC), we found that nociceptor neurons in tongue tumors overexpress Oprl1 and exhibit severe mechanical pain hypersensitivity. Compared to healthy tissue, oSCC tumors have dense infiltration of nociceptor fibers and N/OFQ-expressing B cells. Pharmacological blockade of Oprl1 reduced HNSCC-induced mechanical pain. In a melanoma mouse model, tumor-innervating neurons also overexpressed Oprl1, and similar overexpression was observed when DRG neurons were co-cultured with B16F10 cells. Activating OPRL1 reduced tumor size, enhanced cytotoxic T-cell infiltration, and relieved cancer-induced thermal hypersensitivity. In contrast, depleting CD19+ B cells or blocking OPRL1 led to increased tumor growth, reduced CD8+ T-cell infiltration and cytotoxic potential, exacerbated pain, and elevated CGRP levels. Moreover, we discovered that Ramp1+ B cells express Pnoc, but this expression is suppressed by CGRP. Blocking RAMP1 reduced tumor growth and promoted B-cell Pnoc expression. Overall, these findings suggest that targeting the N/OFQ and RAMP1 pathways could bolster anti-tumor immunity while simultaneously alleviating cancer-induced pain.
Insights
Pain-sensing neurons and B cells interact in cancer, influencing immunity and pain. Targeting nociceptin/orphanin FQ (N/OFQ) and receptor activity-modifying protein 1 (RAMP1) pathways may enhance anti-tumor immunity and reduce pain.
Area of Science:
- Neuroscience
- Immunology
- Oncology
Background:
- Nociceptor neurons transmit pain signals and modulate immunity via neuropeptides.
- Tumor-innervating nociceptors release calcitonin gene-related peptide (CGRP), interacting with receptor activity-modifying protein 1 (RAMP1) in head and neck squamous cell carcinoma (HNSCC) and melanoma.
- Opioid use in HNSCC correlates with increased pain, perineural invasion, and decreased B-cell infiltration, suggesting poorer survival.
Purpose of the Study:
- To investigate the role of nociceptors, B cells, and their signaling pathways in cancer immunity and pain.
- To explore the therapeutic potential of targeting nociceptin/orphanin FQ (N/OFQ) and RAMP1 pathways in cancer treatment and pain management.
Main Methods:
- Retrospective analysis of HNSCC patient clinical charts.
- In silico single-cell RNA sequencing of HNSCC tumors.
- Mouse models of oral squamous cell carcinoma (oSCC) and melanoma.
- Pharmacological blockade and activation of specific signaling pathways (OPRL1, RAMP1).
- B-cell depletion studies.
Main Results:
- Opioid use downregulates N/OFQ in HNSCC; B cells are a primary source of N/OFQ.
- High expression of Pnoc or Oprl1 correlates with better survival in melanoma and HNSCC.
- Blocking OPRL1 reduced cancer-induced pain; activating OPRL1 reduced tumor size and enhanced T-cell infiltration.
- B-cell depletion or OPRL1 blockade increased tumor growth and exacerbated pain.
- RAMP1+ B cells express Pnoc, suppressed by CGRP; blocking RAMP1 promoted Pnoc expression and reduced tumor growth.
Conclusions:
- The N/OFQ and RAMP1 pathways are critical regulators of anti-tumor immunity and cancer pain.
- Targeting these pathways offers a dual therapeutic strategy to enhance anti-tumor responses and alleviate pain in HNSCC and melanoma.
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