Related Experiment Video
Updated: Feb 15, 2026

A Flow Cytometry-Based Cytotoxicity Assay for the Assessment of Human NK Cell Activity
Published on: August 9, 2017
Rewiring melanoma cell fate: TRPM8 modulators trigger apoptosis and boost NK cell cytotoxicity
Carmela Sorrentino1, Carmine Lauretta1, Rosa D'Angiolo1
1Dept of Precision Medicine, University of Campania "L.Vanvitelli", Naples, Italy.
Abstract:
Metastatic melanoma is an aggressive malignancy with limited long-term treatment success due to therapeutic resistance and immune evasion. The transient receptor potential melastatin 8 (TRPM8) ion channel is overexpressed in melanoma but its role as therapeutic target remains unexplored. We investigated the anti-tumor effects of novel TRPM8 modulators in metastatic melanoma cells using viability assays, apoptosis markers, mitochondrial function analyses, reactive oxygen species (ROS) measurements and gene silencing. Their functional impact was further assessed in 3D melanoma organoids, clonogenic survival assays, and natural killer (NK) cell co-culture systems. TRPM8 is significantly overexpressed in metastatic melanoma, as compared with the normal counterparts. Its pharmacological inhibition with novel modulators selectively induces calcium-independent mitochondrial apoptosis characterized by ROS accumulation, mitochondrial membrane depolarization, cytochrome c release, and caspase-3 activation. This process involves activation of the ATM/p53 pathway and upregulation of pro-apoptotic proteins. Additionally, TRPM8 modulators increase expression of the NK cell-activating ligand ULBP1, enhancing melanoma susceptibility to NK-mediated cytotoxicity. Our study identifies TRPM8 as a promising biomarker in melanoma. Its targeting triggers mitochondrial cell death and simultaneously boosts NK cell recognition via ULBP1/NKG2D engagement. TRPM8 targeting in combination with immunotherapy might be, hence, further explored in clinical setting of advanced melanoma.
Insights
Targeting the TRPM8 ion channel in metastatic melanoma halts tumor growth by inducing mitochondrial apoptosis and enhancing natural killer cell activity. This dual action presents a promising therapeutic strategy for advanced melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Metastatic melanoma is a deadly cancer with poor treatment outcomes.
- The TRPM8 ion channel is overexpressed in melanoma, but its therapeutic potential is unknown.
Purpose of the Study:
- To investigate the anti-tumor effects of novel TRPM8 modulators in metastatic melanoma.
- To explore TRPM8 as a therapeutic target and biomarker for melanoma.
Main Methods:
- Utilized viability assays, apoptosis markers, mitochondrial function analysis, and ROS measurements.
- Assessed effects in 3D melanoma organoids, clonogenic assays, and NK cell co-cultures.
- Employed gene silencing and pharmacological TRPM8 inhibition.
Main Results:
- TRPM8 is overexpressed in metastatic melanoma.
- TRPM8 inhibition induced calcium-independent mitochondrial apoptosis via ROS accumulation and caspase-3 activation.
- TRPM8 modulators upregulated ULBP1, increasing melanoma susceptibility to NK cell cytotoxicity.
Conclusions:
- TRPM8 is a viable therapeutic target and biomarker for melanoma.
- Targeting TRPM8 triggers mitochondrial cell death and enhances NK cell recognition.
- Combination therapy of TRPM8 inhibition and immunotherapy warrants clinical investigation for advanced melanoma.
Related Concept Videos
Immune Surveillance by NK Cells and Phagocytes
Natural Killer Cells: The Fast Responders
NK cells are large granular lymphocytes found in the blood and lymphatic system. These...
Cytotoxic T Cells-mediated Immune Response
Immunological surveillance is the ability of immune cells to monitor and eliminate infected cells with intracellular pathogens, neoplastically transformed cells, and cells with non-self antigens. Cytotoxic T cells and NK...
Apoptosis
Fates of Pyruvate
In aerobic organisms, pyruvate is metabolized via the citric acid cycle to produce reduced coenzymes NADH and FADH2. These coenzymes are then oxidized in the electron transport chain to produce ATP and, in the process, regenerate the NAD+ and FAD. As seen in some cell types and organisms, fermentation...
Adult Stem Cells
Personal Choice and Fate Attributions

