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Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
AM251 induces apoptosis and G2/M cell cycle arrest in A375 human melanoma cells
Sara Carpi1, Stefano Fogli, Antonella Romanini
1Departments of aPharmacy bTranslational Research and New Technologies in Medicine and Surgery cVeterinary Sciences, University of Pisa dMedical Oncology Unit, University Hospital of Pisa, Pisa, Italy.
Abstract:
Human cutaneous melanoma is an aggressive and chemotherapy-resistant type of cancer. AM251 is a cannabinoid type 1 (CB1) receptor antagonist/inverse agonist with off-target antitumor activity against pancreatic and colon cancer cells. The current study aimed to characterize the in-vitro antimelanoma activity of AM251. The BRAF V600E mutant melanoma cell line, A375, was used as an in-vitro model system. Characterization tools included a cell viability assay, nuclear morphology assessment, gene expression, western blot, flow cytometry with Annexin V-FITC/7-AAD double staining, cell cycle analyses, and measurements of changes in intracellular cAMP and calcium concentrations. AM251 exerted a marked cytotoxic effect against A375 human melanoma cells with potency comparable with that observed for cisplatin without significant changes in the human dermal fibroblasts viability. AM251, at a concentration that approximates the IC50, downregulated genes encoding antiapoptotic proteins (BCL2 and survivin) and increased transcription levels of proapoptotic BAX, induced alteration of Annexin V reactivity, DNA fragmentation, chromatin condensation in the cell nuclei, and G2/M phase arrest.AM251 also induced a 40% increase in the basal cAMP levels, but it did not affect intracellular calcium concentrations. The involvement of GPR55, TRPA1, and COX-2 in the AM251 mechanism of action was excluded. The combination of AM251 with celecoxib produced a synergistic antitumor activity, although the mechanism underlying this effect remains to be elucidated. This study provides the first evidence of a proapoptotic effect and G2/M cell cycle arrest of AM251 on A375 cells. This compound may be a potential prototype for the development of promising diarylpyrazole derivatives to be evaluated in human cutaneous melanoma.
Insights
AM251, a CB1 receptor antagonist, shows potent antimelanoma activity against human cutaneous melanoma cells. It induces apoptosis and G2/M cell cycle arrest, offering a potential new therapeutic avenue.
Area of Science:
- Oncology
- Pharmacology
Background:
- Human cutaneous melanoma is an aggressive cancer resistant to chemotherapy.
- AM251, a cannabinoid type 1 (CB1) receptor antagonist, exhibits antitumor effects in other cancer types.
Purpose of the Study:
- To investigate the in-vitro antimelanoma activity of AM251.
- To characterize the molecular mechanisms underlying AM251's effects on melanoma cells.
Main Methods:
- Utilized the A375 human melanoma cell line (BRAF V600E mutant).
- Employed cell viability assays, nuclear morphology assessment, gene expression analysis, Western blot, flow cytometry (Annexin V-FITC/7-AAD), cell cycle analysis, and measurements of intracellular cAMP and calcium.
- Investigated potential involvement of GPR55, TRPA1, and COX-2, and assessed synergistic effects with celecoxib.
Main Results:
- AM251 demonstrated significant cytotoxicity against A375 cells, comparable to cisplatin, with minimal impact on fibroblasts.
- AM251 induced apoptosis by downregulating BCL2 and survivin, upregulating BAX, and causing DNA fragmentation and chromatin condensation.
- Cell cycle analysis revealed a G2/M phase arrest, and AM251 increased intracellular cAMP levels but not calcium.
- The study excluded the involvement of GPR55, TRPA1, and COX-2 in AM251's mechanism.
Conclusions:
- AM251 exhibits significant proapoptotic and G2/M cell cycle arrest effects on A375 melanoma cells.
- AM251 shows potential as a prototype for developing novel diarylpyrazole derivatives for melanoma treatment.
- Combination therapy with celecoxib demonstrated synergistic antitumor activity, warranting further investigation.
