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Multiplexed Immunofluorescence Analysis and Quantification of Intratumoral PD-1+ Tim-3+ CD8+ T Cells
Published on: February 8, 2018
Molecular patterns of resistance to immune checkpoint blockade in melanoma
Martin Lauss1,2, Bengt Phung1,2, Troels Holz Borch3
1Division of Oncology, Department of Clinical Sciences, Faculty of Medicine, Lund University, 22185, Lund, Sweden.
Abstract:
Immune checkpoint blockade (ICB) has improved outcome for patients with metastatic melanoma but not all benefit from treatment. Several immune- and tumor intrinsic features are associated with clinical response at baseline. However, we need to further understand the molecular changes occurring during development of ICB resistance. Here, we collect biopsies from a cohort of 44 patients with melanoma after progression on anti-CTLA4 or anti-PD1 monotherapy. Genetic alterations of antigen presentation and interferon gamma signaling pathways are observed in approximately 25% of ICB resistant cases. Anti-CTLA4 resistant lesions have a sustained immune response, including immune-regulatory features, as suggested by multiplex spatial and T cell receptor (TCR) clonality analyses. One anti-PD1 resistant lesion harbors a distinct immune cell niche, however, anti-PD1 resistant tumors are generally immune poor with non-expanded TCR clones. Such immune poor microenvironments are associated with melanoma cells having a de-differentiated phenotype lacking expression of MHC-I molecules. In addition, anti-PD1 resistant tumors have reduced fractions of PD1+ CD8+ T cells as compared to ICB naïve metastases. Collectively, these data show the complexity of ICB resistance and highlight differences between anti-CTLA4 and anti-PD1 resistance that may underlie differential clinical outcomes of therapy sequence and combination.
Insights
Understanding immune checkpoint blockade (ICB) resistance in melanoma is crucial. Genetic changes and distinct immune microenvironments characterize resistance to anti-CTLA4 and anti-PD1 therapies, informing future treatment strategies.
Area of Science:
- Oncology
- Immunology
- Dermatology
Background:
- Immune checkpoint blockade (ICB) therapy offers improved outcomes for metastatic melanoma patients.
- However, not all patients benefit, and resistance mechanisms require further investigation.
- Understanding molecular changes during ICB resistance is essential for optimizing treatment.
Purpose of the Study:
- To investigate the molecular and immune features of melanoma following progression on anti-CTLA4 or anti-PD1 monotherapy.
- To identify differences in resistance mechanisms between anti-CTLA4 and anti-PD1 blockade.
Main Methods:
- Biopsy collection from 44 melanoma patients post-progression on ICB.
- Analysis of genetic alterations in antigen presentation and interferon-gamma signaling pathways.
- Multiplex spatial analysis and T cell receptor (TCR) clonality assessment.
Main Results:
- Genetic alterations in antigen presentation and IFN-gamma pathways found in ~25% of resistant cases.
- Anti-CTLA4 resistance associated with sustained immune response and immune-regulatory features.
- Anti-PD1 resistance linked to immune-poor tumors, de-differentiated melanoma cells lacking MHC-I, and reduced PD1+ CD8+ T cells.
Conclusions:
- Melanoma ICB resistance is complex, with distinct features for anti-CTLA4 and anti-PD1 therapies.
- Differences in resistance mechanisms may explain varying clinical outcomes with different therapy sequences or combinations.
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