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Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Case Report: Combined CDK4/6 and MEK Inhibition in Refractory CDKN2A and NRAS Mutant Melanoma
Andrea Forschner1, Tobias Sinnberg1,2, Gabi Mroz1
1Department of Dermatology, University Hospital Tübingen, Tübingen, Germany.
Abstract:
There are only limited treatment options for metastatic NRAS mutant melanoma patients with resistance to immune checkpoint inhibitors. Besides activation of the mitogen-activated protein (MAP) kinase pathway, they often have additional disturbances in cell cycle regulation. However, unlike BRAF mutant melanoma, no targeted therapy has yet been approved for NRAS mutant melanoma so far. Here we present a NRAS mutant melanoma patient with response to combined binimetinib and ribociclib therapy following characterization of the molecular defects of the tumor by panel sequencing. Next generation sequencing (708 cancer genes) of a soft tissue metastasis revealed a homozygous deletion of CDKN2A in addition to the previously known NRAS mutation, as well as amplification of CCNE1 and CDK6. Immunohistochemical staining of the altered cell cycle genes confirmed loss of p16, reduced expression of p21 and high expression of CDK6 and cyclin D1. As the patient had been progressive on combined immunotherapy, targeted therapy with combined MEK and CDK4/6 inhibition was initiated as recommended by the molecular tumor board. Response to treatment was monitored with PET/CT and liquid biopsy, serum LDH, and S100. In addition, a patient-derived xenograft (PDX) was used to prove the efficacy of the two drugs in combination. Furthermore, senescence-associated beta-galactosidase staining showed that more cells were senescent under the combination treatment of binimetinib and ribociclib. Our case demonstrates how an individualized, molecular-based therapeutic approach could be found based on next-generation sequencing results. Furthermore our report highlights the fruitful and efficient collaboration of dermatooncologists, human geneticists, molecular pathologists, biochemists, radiologists, and nuclear physicians. Further studies are urgently needed to expand the very limited therapeutic landscape of NRAS mutated melanoma.
Insights
This case study shows a successful targeted therapy approach for NRAS-mutant melanoma resistant to immunotherapy. Combined binimetinib and ribociclib therapy, guided by molecular profiling, effectively treated the patient and induced cellular senescence.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- Metastatic NRAS-mutant melanoma lacks targeted therapies, especially after immune checkpoint inhibitor resistance.
- Patients often exhibit concurrent cell cycle dysregulation alongside MAP kinase pathway activation.
Observation:
- A patient with NRAS-mutant melanoma resistant to immunotherapy was treated with binimetinib and ribociclib.
- Tumor sequencing revealed CDKN2A deletion, CCNE1 amplification, and CDK6 amplification.
- Immunohistochemistry confirmed loss of p16, reduced p21, and high CDK6/cyclin D1 expression.
Findings:
- The combination therapy showed clinical response, confirmed by PET/CT and liquid biopsy.
- Patient-derived xenografts validated the efficacy of combined MEK and CDK4/6 inhibition.
- Binimetinib and ribociclib treatment increased senescence in tumor cells.
Implications:
- Individualized, molecular-guided therapy can overcome treatment limitations in NRAS-mutant melanoma.
- Multidisciplinary collaboration is crucial for implementing precision oncology approaches.
- Further research is needed to expand therapeutic options for this challenging cancer type.

