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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
Sensitivity to immune checkpoint inhibitors in BRAF/MEK inhibitor refractory melanoma
Riyaben P Patel1,2, Lydia Rui Jia Lim1,2, Reem Saleh1
1Peter MacCallum Cancer Centre, Melbourne, Victoria, Australia.
Background:
Resistance to BRAF and MEK inhibitors (BRAFi/MEKi) in metastatic melanoma frequently results in cross-resistance to immune checkpoint inhibitors (ICI), limiting effective treatment options. However, a subset of BRAFi/MEKi-resistant patients remains responsive to second-line ICI, suggesting heterogeneous underlying resistance mechanisms. This study aimed to explore the tumor immune microenvironment in BRAFi/MEKi-resistant melanoma to uncover factors influencing sensitivity to second-line ICI therapy.
Method:
To investigate mechanisms underlying resistance and responsiveness to second-line ICIs, BRAFi/MEKi-resistant melanoma mouse models were used. Flow cytometry was employed to analyze immune cell populations within the tumor microenvironment, focusing on changes in CD8+T effector cells and other key immune subsets. RNA sequencing was performed to profile transcriptomic changes in resistant tumors, providing insights into the signaling pathways associated with resistance. Clinical samples from BRAFi/MEKi-resistant patients were further evaluated for correlations between immune profiles and key signaling pathways to support findings from the preclinical models.
Results:
Using BRAFi/MEKi-resistant melanoma mouse models, we observed distinct alterations in the tumor-immune microenvironment. Tumors exhibiting resistance showed a significant increase in CD8+T effector cells following BRAFi/MEKi treatment, suggesting an immune-stimulatory response. Mechanistic analysis identified the activation of the EGFR-STAT signaling pathway as a key driver of intrinsic resistance in these models. Notably, these tumors retained sensitivity to second-line ICI therapy, contrasting with NRAS-driven BRAFi/MEKi-resistant tumors, which demonstrated cross-resistance to ICIs. Supporting these findings, clinical samples from BRAFi/MEKi-resistant patients revealed a correlation between elevated EGFR activation and higher immune scores, indicating potential sensitivity to ICI therapy in this subset of patients.
Conclusion:
EGFR overexpression emerges as a potential predictive biomarker for responsiveness to second-line ICIs in BRAFi/MEKi-resistant melanoma. These findings underscore the need for stratified therapeutic approaches and highlight EGFR as a target for improving outcomes in ICI therapy.
Insights
Melanoma resistant to BRAF/MEK inhibitors may still respond to immune checkpoint inhibitors (ICI). EGFR overexpression predicts ICI response in resistant melanoma, suggesting targeted therapy can improve outcomes.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Metastatic melanoma often develops resistance to BRAF and MEK inhibitors (BRAFi/MEKi), frequently leading to cross-resistance with immune checkpoint inhibitors (ICI).
- A subset of patients with BRAFi/MEKi-resistant melanoma retains sensitivity to second-line ICI, indicating diverse resistance mechanisms.
- Understanding the tumor immune microenvironment in BRAFi/MEKi-resistant melanoma is crucial for identifying factors influencing ICI response.
Purpose of the Study:
- To investigate the tumor immune microenvironment in BRAFi/MEKi-resistant melanoma.
- To uncover mechanisms of resistance and responsiveness to second-line ICI therapy.
- To identify predictive biomarkers for ICI sensitivity in BRAFi/MEKi-resistant melanoma.
Main Methods:
- Utilized BRAFi/MEKi-resistant melanoma mouse models for mechanistic studies.
- Analyzed immune cell populations (e.g., CD8+ T cells) using flow cytometry.
- Performed RNA sequencing to profile transcriptomic changes and identified key signaling pathways.
- Evaluated clinical samples for correlations between immune profiles, signaling pathways, and ICI response.
Main Results:
- BRAFi/MEKi-resistant tumors showed increased CD8+ T effector cells, suggesting an immune-stimulatory response.
- EGFR-STAT signaling pathway activation was identified as a driver of intrinsic resistance.
- Tumors with EGFR activation retained sensitivity to second-line ICI, unlike NRAS-driven resistant tumors.
- Clinical samples confirmed a correlation between elevated EGFR activation and higher immune scores in resistant melanoma.
Conclusions:
- EGFR overexpression is a potential predictive biomarker for second-line ICI responsiveness in BRAFi/MEKi-resistant melanoma.
- Stratified therapeutic approaches targeting EGFR may improve outcomes in ICI therapy for melanoma.
- EGFR represents a promising therapeutic target to overcome resistance and enhance ICI efficacy.
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