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Updated: Jun 25, 2026

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Molecular determinants of melanoma malignancy: selecting targets for improved efficacy of chemotherapy
Jinming Yang1, Snjezana Zaja-Milatovic, Yee-Mon Thu
1Department of Cancer Biology, Vanderbilt University School of Medicine, 771 PRB, 2220 Pierce Avenue, Nashville, TN 37232, USA.
Abstract:
The BRAFV600E mutation is common in human melanoma. This mutation enhances IkappaB kinase (IKK)/nuclear factor-kappaB (NF-kappaB) and extracellular signal-regulated kinase/activator protein signaling cascades. In this study, we evaluated the efficacy of targeting either B-Raf or IKKbeta in combination with the DNA alkylating agent temozolomide for treatment of advanced metastatic melanoma. Xenografts of Hs294T human metastatic melanoma cells exhibiting the BRAFV600E mutation were treated with inhibitors of IKKbeta (BMS-345541), B-Raf (BAY 54-9085), and/or temozolomide. Drug response was mechanistically analyzed in vitro and in vivo. In this study, we determined that the antitumor activity of all three drugs depends on inhibition of NF-kappaB. BMS-345541 inhibits IKKbeta-mediated phosphorylation of IkappaBalpha and thus blocks the nuclear localization of NF-kappaB, whereas BAY 54-9085 inhibits activation of NF-kappaB through a mechanism that does not involve stabilization of IkappaBalpha. Moreover, BMS-345541, but not BAY 54-9085, activates the death pathways of p53 and c-Jun-NH2-kinase, contributing to the killing of melanoma cells. Temozolomide inhibits both NF-kappaB and extracellular signal-regulated kinase activity, conferring effective in vivo antitumor activity. Thus, temozolomide, but not BAY 54-9085, has a synergistic in vivo antitumor effect with BMS-345541. We conclude that the efficacy of antimelanoma therapy depends on inhibition of expression of antiapoptotic genes transcriptionally regulated by NF-kappaB. In contrast, drug targeting of the extracellular signal-regulated kinase/mitogen-activated protein kinase pathway alone in melanoma cells is ineffective for melanoma therapy in cases where NF-kappaB is not also targeted.
Insights
Targeting nuclear factor-kappaB (NF-kappaB) is key for effective melanoma treatment. Combining IKKbeta inhibitors with temozolomide shows synergistic antitumor activity against BRAFV600E melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- The BRAFV600E mutation is prevalent in human melanoma, activating key signaling pathways like IKK/NF-kappaB and ERK/AP.
- Understanding these pathways is crucial for developing effective treatments for advanced metastatic melanoma.
Purpose of the Study:
- To evaluate the efficacy of targeting B-Raf or IKKbeta in combination with temozolomide for advanced metastatic melanoma.
- To mechanistically analyze the drug response of these combinations in vitro and in vivo.
Main Methods:
- Utilized xenografts of Hs294T human metastatic melanoma cells with the BRAFV600E mutation.
- Treated xenografts with inhibitors of IKKbeta (BMS-345541), B-Raf (BAY 54-9085), and/or the DNA alkylating agent temozolomide.
- Performed in vitro and in vivo mechanistic analysis of drug response.
Main Results:
- Antitumor activity of all tested drugs was dependent on the inhibition of NF-kappaB.
- BMS-345541 inhibited IKKbeta-mediated phosphorylation of IkappaBalpha, blocking NF-kappaB nuclear localization and activating p53/c-Jun-NH2-kinase pathways.
- Temozolomide inhibited both NF-kappaB and ERK activity, demonstrating synergistic in vivo antitumor effects with BMS-345541.
Conclusions:
- Efficacy of antimelanoma therapy relies on inhibiting NF-kappaB-regulated antiapoptotic gene expression.
- Targeting the ERK/MAPK pathway alone is insufficient for melanoma therapy without concurrent NF-kappaB inhibition.
- Combination therapy, particularly with IKKbeta inhibitors and temozolomide, offers a promising strategy for advanced metastatic melanoma.
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