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Immunophenotyping of Orthotopic Homograft Syngeneic of Murine Primary KPC Pancreatic Ductal Adenocarcinoma by Flow Cytometry
Published on: October 9, 2018
Immune Cytolytic Activity Stratifies Molecular Subsets of Human Pancreatic Cancer
David Balli1, Andrew J Rech1, Ben Z Stanger2,3,4,5,6
1Abramson Family Cancer Research Institute, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.
Abstract:
Purpose: Immunotherapy has the potential to improve the dismal prognosis in pancreatic ductal adenocarcinoma (PDA), but clinical trials, including those with single-agent PD-1 or PD-L1 inhibition, have been disappointing. Our aim was to examine the immune landscape of PDA as it relates to aspects of tumor biology, including neoepitope burden.Experimental Design: We used publicly available expression data from 134 primary resection PDA samples from The Cancer Genome Atlas to stratify patients according to a cytolytic T-cell activity expression index. We correlated cytolytic immune activity with mutational, structural, and neoepitope features of the tumor.Results: Human PDA displays a range of intratumoral cytolytic T-cell activity. PDA tumors with low cytolytic activity exhibited significantly increased copy number alterations, including recurrent amplifications of MYC and NOTCH2 and recurrent deletions and mutations of CDKN2A/B In sharp contrast to other tumor types, high cytolytic activity in PDA did not correlate with increased mutational burden or neoepitope load (MHC class I and class II). Cytolytic-high tumors exhibited increased expression of multiple immune checkpoint genes compared to cytolytic-low tumors, except for PD-L1 expression, which was uniformly low.Conclusions: These data identify a subset of human PDA with high cytolytic T-cell activity. Rather than being linked to mutation burden or neoepitope load, immune activation indices in PDA were inversely linked to genomic alterations, suggesting that intrinsic oncogenic processes drive immune inactivity in human PDA. Furthermore, these data highlight the potential importance of immune checkpoints other than PD-L1/PD-1 as therapeutic targets in this lethal disease. Clin Cancer Res; 23(12); 3129-38. ©2016 AACR.
Insights
Pancreatic ductal adenocarcinoma (PDA) with high cytolytic T-cell activity is not linked to neoepitope load. Genomic alterations, not mutations, drive immune inactivity, suggesting alternative immune checkpoints beyond PD-L1/PD-1 as therapeutic targets.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Pancreatic ductal adenocarcinoma (PDA) has a poor prognosis, and immunotherapy has shown limited success.
- Previous clinical trials with PD-1 or PD-L1 inhibitors have yielded disappointing results in PDA.
- Understanding the immune landscape of PDA is crucial for developing effective immunotherapies.
Purpose of the Study:
- To investigate the immune landscape of PDA in relation to tumor biology, including neoepitope burden.
- To stratify PDA patients based on cytolytic T-cell activity.
- To correlate immune activity with mutational, structural, and neoepitope features.
Main Methods:
- Utilized publicly available expression data from 134 primary resection PDA samples (The Cancer Genome Atlas).
- Stratified patients using a cytolytic T-cell activity expression index.
- Correlated cytolytic immune activity with genomic alterations (mutations, copy number alterations) and neoepitope load.
Main Results:
- PDA exhibits variable intratumoral cytolytic T-cell activity.
- Low cytolytic activity PDA tumors showed increased copy number alterations (e.g., MYC, NOTCH2 amplifications; CDKN2A/B deletions/mutations).
- High cytolytic activity in PDA did not correlate with increased mutation burden or neoepitope load, unlike other cancers.
- Cytolytic-high tumors expressed more immune checkpoint genes, excluding PD-L1, which was uniformly low.
Conclusions:
- Identified a subset of human PDA with high cytolytic T-cell activity.
- Immune activation in PDA is inversely linked to genomic alterations, suggesting oncogenic processes drive immune inactivity.
- Therapeutic strategies targeting immune checkpoints beyond PD-1/PD-L1 may be important for PDA treatment.
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