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Updated: Jul 4, 2025

Analysis of Lymph Node Volume by Ultra-High-Frequency Ultrasound Imaging in the Braf/Pten Genetically Engineered Mouse Model of Melanoma
Published on: September 8, 2021
Targeting CD20-expressing malignant melanoma cells augments BRAF inhibitor killing
Abdullahi B Mukhtar1, Huw J Morgan1, Alex Gibbs1
1European Cancer Stem Cell Research Institute, School of Biosciences, Cardiff University, Cardiff, UK.
Background:
Mutant BRAF targeted therapies remain a standard of care for the treatment of metastatic malignant melanoma (MM); however, high initial response rates are tempered by the persistence of residual MM cells that eventually lead to disease recurrence and mortality. As MM recurrence during targeted therapy can present with the simultaneous occurrence of multiple tumour nodules at the original body sites, we hypothesized the presence of an intrinsically resistant MM cell subpopulation.
Objectives:
To identify an MM cell subpopulation that is intrinsically resistant to targeted therapy and possibly responsible for MM recurrence.
Methods:
Using melanoma cell lines, we defined culture conditions for the reproducible three-dimensional growth of melanospheres to investigate putative cancer stem cell populations. We undertook RNA sequencing and bioinformatic analysis to characterize cell populations between adherent and nonadherent culture, and cells expressing or not expressing CD20. Furthermore, we defined an in vitro assay to evaluate the killing of melanoma cancer stem cells as a therapeutic test using combination therapies targeting driver mutation and CD20.
Results:
We described the culture conditions that promote MM cells to form melanospheres with a reproducible colony-forming efficiency rate of 0.3-1.3%. RNA sequencing of melanosphere vs. conventional MM cell cultures (n = 6), irrespective of the BRAF mutation status, showed that melanosphere formation was associated with growth and differentiation transcriptional signatures resembling MM tumours. Importantly, melanosphere formation also led to the emergence of a CD20+ MM cell subpopulation, similar to that observed in primary human MM tumours. CD20+ MM cells were resistant to BRAF inhibitor therapy and, consistent with this finding, demonstrated a Forkhead box protein M1 transcriptomic profile (n = 6). Combining BRAF inhibitor and anti-CD20 antibody treatment led to the additional killing of previously resistant CD20+ BRAF mutant MM cells.
Conclusions:
In patients with MM that harbour a CD20+ subpopulation, combined therapy with BRAF inhibitor and anti-CD20 antibody could potentially kill residual MM cells and prevent disease recurrence.
Insights
Targeted therapies for metastatic melanoma (MM) face recurrence due to resistant cells. A study identified a CD20+ subpopulation resistant to BRAF inhibitors, suggesting combination therapy could prevent MM recurrence.
Area of Science:
- Oncology
- Cancer Biology
- Immunotherapy
Background:
- Metastatic melanoma (MM) treatment with BRAF inhibitors shows initial success but often leads to disease recurrence.
- Recurrence may stem from an intrinsically resistant subpopulation of MM cells.
- Understanding these resistant cells is crucial for improving long-term patient outcomes.
Purpose of the Study:
- To identify and characterize an intrinsically resistant MM cell subpopulation.
- To investigate the role of this subpopulation in therapeutic resistance and disease recurrence.
- To evaluate combination therapies targeting resistant MM cells.
Main Methods:
- Established three-dimensional melanosphere cultures to mimic cancer stem cell populations.
- Utilized RNA sequencing and bioinformatic analysis to compare cell populations.
- Developed an in vitro assay to test combination therapies, including BRAF inhibitors and anti-CD20 antibodies.
Main Results:
- Melanosphere formation yielded a CD20+ MM cell subpopulation, also found in human MM tumors.
- CD20+ MM cells exhibited resistance to BRAF inhibitor therapy, correlating with Forkhead box protein M1 expression.
- Combination therapy with BRAF inhibitor and anti-CD20 antibody effectively killed previously resistant CD20+ MM cells.
Conclusions:
- A CD20+ MM cell subpopulation is resistant to BRAF inhibitors.
- Targeting this subpopulation with combined BRAF inhibitor and anti-CD20 antibody therapy may overcome resistance.
- This combination approach holds potential for preventing MM recurrence in patients with CD20+ subpopulations.
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