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.

Nature Communications
|April 9, 2024
PubMed

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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