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A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Metastatic Melanoma Patient-Derived Xenografts Respond to MDM2 Inhibition as a Single Agent or in Combination with
Rebecca L Shattuck-Brandt1,2, Sheau-Chiann Chen3, Emily Murray1
1Department of Pharmacology, Vanderbilt University, Nashville, Tennessee.
Purpose:
Over 60% of patients with melanoma respond to immune checkpoint inhibitor (ICI) therapy, but many subsequently progress on these therapies. Second-line targeted therapy is based on BRAF mutation status, but no available agents are available for NRAS, NF1, CDKN2A, PTEN, and TP53 mutations. Over 70% of melanoma tumors have activation of the MAPK pathway due to BRAF or NRAS mutations, while loss or mutation of CDKN2A occurs in approximately 40% of melanomas, resulting in unregulated MDM2-mediated ubiquitination and degradation of p53. Here, we investigated the therapeutic efficacy of over-riding MDM2-mediated degradation of p53 in melanoma with an MDM2 inhibitor that interrupts MDM2 ubiquitination of p53, treating tumor-bearing mice with the MDM2 inhibitor alone or combined with MAPK-targeted therapy.
Experimental Design:
To characterize the ability of the MDM2 antagonist, KRT-232, to inhibit tumor growth, we established patient-derived xenografts (PDX) from 15 patients with melanoma. Mice were treated with KRT-232 or a combination with BRAF and/or MEK inhibitors. Tumor growth, gene mutation status, as well as protein and protein-phosphoprotein changes, were analyzed.
Results:
One-hundred percent of the 15 PDX tumors exhibited significant growth inhibition either in response to KRT-232 alone or in combination with BRAF and/or MEK inhibitors. Only BRAFV600WT tumors responded to KRT-232 treatment alone while BRAFV600E/M PDXs exhibited a synergistic response to the combination of KRT-232 and BRAF/MEK inhibitors.
Conclusions:
KRT-232 is an effective therapy for the treatment of either BRAFWT or PAN WT (BRAFWT, NRASWT) TP53WT melanomas. In combination with BRAF and/or MEK inhibitors, KRT-232 may be an effective treatment strategy for BRAFV600-mutant tumors.
Insights
An MDM2 inhibitor, KRT-232, effectively inhibited melanoma tumor growth in mice. Combination therapy with MAPK-targeted agents showed synergistic effects, offering new treatment avenues for BRAF-mutant melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Melanoma patients often progress after immune checkpoint inhibitor (ICI) therapy.
- Targeted therapy for melanoma is guided by BRAF mutation status, leaving gaps for NRAS, NF1, CDKN2A, PTEN, and TP53 mutations.
- MAPK pathway activation, driven by BRAF or NRAS mutations, occurs in over 70% of melanomas.
- CDKN2A loss/mutation in ~40% of melanomas leads to p53 degradation via MDM2.
Purpose of the Study:
- Investigate the therapeutic efficacy of an MDM2 inhibitor in melanoma.
- Determine if inhibiting MDM2-mediated p53 degradation can overcome resistance.
- Evaluate the combination of an MDM2 inhibitor with MAPK-targeted therapy.
Main Methods:
- Established 15 patient-derived melanoma xenografts (PDX).
- Treated mice with the MDM2 antagonist KRT-232 alone or combined with BRAF/MEK inhibitors.
- Analyzed tumor growth, gene mutation status, and protein expression.
Main Results:
- 100% of PDX tumors showed significant growth inhibition with KRT-232 or combination therapy.
- KRT-232 alone was effective in BRAF wild-type (WT) tumors.
- BRAF V600E/M mutant tumors showed synergistic response to KRT-232 plus BRAF/MEK inhibitors.
Conclusions:
- KRT-232 is effective for BRAF WT and PAN WT (BRAF WT, NRAS WT, TP53 WT) melanomas.
- Combination therapy with KRT-232 and BRAF/MEK inhibitors shows promise for BRAF V600 mutant melanoma.
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