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.

Anti-Cancer Drugs
|May 15, 2015
PubMed

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.