Evolution of Neoantigen Landscape during Immune Checkpoint Blockade in Non-Small Cell Lung Cancer
Valsamo Anagnostou1,2, Kellie N Smith1,2, Patrick M Forde1,2
1The Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, Maryland.
Abstract:
Immune checkpoint inhibitors have shown significant therapeutic responses against tumors containing increased mutation-associated neoantigen load. We have examined the evolving landscape of tumor neoantigens during the emergence of acquired resistance in patients with non-small cell lung cancer after initial response to immune checkpoint blockade with anti-PD-1 or anti-PD-1/anti-CTLA-4 antibodies. Analyses of matched pretreatment and resistant tumors identified genomic changes resulting in loss of 7 to 18 putative mutation-associated neoantigens in resistant clones. Peptides generated from the eliminated neoantigens elicited clonal T-cell expansion in autologous T-cell cultures, suggesting that they generated functional immune responses. Neoantigen loss occurred through elimination of tumor subclones or through deletion of chromosomal regions containing truncal alterations, and was associated with changes in T-cell receptor clonality. These analyses provide insight into the dynamics of mutational landscapes during immune checkpoint blockade and have implications for the development of immune therapies that target tumor neoantigens.Significance: Acquired resistance to immune checkpoint therapy is being recognized more commonly. This work demonstrates for the first time that acquired resistance to immune checkpoint blockade can arise in association with the evolving landscape of mutations, some of which encode tumor neoantigens recognizable by T cells. These observations imply that widening the breadth of neoantigen reactivity may mitigate the development of acquired resistance. Cancer Discov; 7(3); 264-76. ©2017 AACR.See related commentary by Yang, p. 250This article is highlighted in the In This Issue feature, p. 235.
Insights
Acquired resistance to immune checkpoint inhibitors can occur due to the loss of tumor neoantigens. Understanding these evolving mutations is key to developing more effective cancer immunotherapies.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Immune checkpoint inhibitors (ICIs) show efficacy in tumors with high neoantigen load.
- Acquired resistance to ICIs is a growing clinical challenge.
- Understanding resistance mechanisms is crucial for improving cancer immunotherapy.
Purpose of the Study:
- To investigate the changes in tumor neoantigens during acquired resistance to ICIs in non-small cell lung cancer (NSCLC).
- To identify genomic alterations associated with neoantigen loss in resistant tumors.
- To explore the implications for future cancer treatment strategies.
Main Methods:
- Analysis of matched pretreatment and resistant tumor samples from NSCLC patients treated with anti-PD-1 or anti-PD-1/anti-CTLA-4 antibodies.
- Genomic sequencing to identify mutations and neoantigens.
- T-cell assays to assess immune responses to neoantigens.
Main Results:
- Acquired resistance was associated with the loss of 7 to 18 mutation-associated neoantigens.
- Neoantigen loss resulted from tumor subclone elimination or chromosomal deletions.
- Eliminated neoantigens elicited functional T-cell responses, indicating their immunogenicity.
- Changes in T-cell receptor clonality were observed alongside neoantigen loss.
Conclusions:
- Acquired resistance to immune checkpoint blockade can be driven by evolving tumor neoantigen landscapes.
- Loss of neoantigens, recognized by T cells, contributes to therapeutic resistance.
- Strategies to broaden neoantigen reactivity may overcome or prevent acquired resistance to ICIs.
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