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Updated: Mar 13, 2026

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Targeting melanoma with front-line therapy does not abrogate Nodal-expressing tumor cells
Mary Jc Hendrix1,2,3, Irawati Kandela4, Andrew P Mazar4
1Department of Biology, Shepherd University, Shepherdstown, WV, USA.
Abstract:
Metastatic melanoma is a highly aggressive skin cancer with a poor prognosis. It is the leading cause of skin cancer deaths with a median overall survival for advanced-stage metastatic disease of <6 months. Despite advances in the field with conventional and targeted therapies, the heterogeneity of melanoma poses the greatest ongoing challenge, ultimately leading to relapse and progression to a more drug-resistant tumor in most patients. Particularly noteworthy are recent findings, indicating that these therapies exert selective pressure on tumors resulting in the activation of pathways associated with cancer stem cells that are unresponsive to current therapy. Our previous studies have shown how Nodal, an embryonic morphogen of the transforming growth factor-beta superfamily, is one of these critical factors that is reactivated in aggressive melanoma and resistant to conventional chemotherapy, such as dacarbazine. In the current study, we sought to determine whether BRAF inhibitor (BRAFi) therapy targeted Nodal-expressing tumor cells in uniquely matched unresectable stage III and IV melanoma patient samples before and after therapy that preceded their eventual death due to disease. The results demonstrate that BRAFi treatment failed to affect Nodal levels in melanoma tissues. Accompanying experiments in soft agar and in nude mice showed the advantage of using combinatorial treatment with BRAFi plus anti-Nodal monoclonal antibody to suppress tumor growth and metastasis. These data provide a promising new approach using front-line therapy combined with targeting a cancer stem cell-associated molecule-producing a more efficacious response than monotherapy.
Insights
BRAF inhibitor therapy does not impact Nodal levels in metastatic melanoma. Combining BRAF inhibitors with anti-Nodal antibodies offers a promising strategy to suppress tumor growth and metastasis in advanced melanoma.
Area of Science:
- Oncology
- Dermatology
- Cancer Stem Cell Biology
Background:
- Metastatic melanoma is an aggressive skin cancer with poor survival rates.
- Therapy resistance and tumor relapse are significant challenges due to tumor heterogeneity.
- Cancer stem cell pathways, including Nodal, are reactivated in resistant melanoma.
Purpose of the Study:
- To investigate if BRAF inhibitor (BRAFi) therapy affects Nodal-expressing cells in melanoma patients.
- To evaluate the efficacy of combinatorial therapy targeting Nodal in melanoma.
Main Methods:
- Analysis of patient melanoma samples (stage III and IV) before and after BRAFi therapy.
- In vitro experiments using soft agar assays.
- In vivo studies using nude mouse models.
Main Results:
- BRAFi treatment did not alter Nodal levels in melanoma tissues.
- Combined BRAFi and anti-Nodal monoclonal antibody treatment suppressed tumor growth and metastasis.
- Combinatorial therapy demonstrated superior efficacy compared to monotherapy.
Conclusions:
- BRAFi monotherapy is insufficient to target Nodal-expressing melanoma cells.
- Targeting Nodal in combination with BRAFi presents a promising therapeutic strategy for advanced melanoma.
- This approach may overcome resistance and improve treatment outcomes for metastatic melanoma patients.
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