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Ultrasound-Guided Orthotopic Implantation of Murine Pancreatic Ductal Adenocarcinoma
Published on: November 19, 2019
T-cell Localization, Activation, and Clonal Expansion in Human Pancreatic Ductal Adenocarcinoma
Ingunn M Stromnes1,2, Ayaka Hulbert3,2, Robert H Pierce3,2
1Clinical Research Division, Fred Hutchinson Cancer Research Center, Seattle, Washington. ingunn@umn.edu pgreen@uw.edu srh@fhcrc.org.
Abstract:
Pancreatic ductal adenocarcinoma (PDA) is a lethal malignancy resistant to most therapies, including immune checkpoint blockade. To elucidate mechanisms of immunotherapy resistance, we assessed immune parameters in resected human PDA. We demonstrate significant interpatient variability in T-cell number, localization, and phenotype. CD8+ T cells, Foxp3+ regulatory T cells, and PD-1+ and PD-L1+ cells were preferentially enriched in tertiary lymphoid structures that were found in most tumors compared with stroma and tumor cell nests. Tumors containing more CD8+ T cells also had increased granulocytes, CD163+ (M2 immunosuppressive phenotype) macrophages, and FOXP3+ regulatory T cells. PD-L1 was rare on tumor cells, but was expressed by CD163+ macrophages and an additional stromal cell subset commonly found clustered together adjacent to tumor epithelium. The majority of tumoral CD8+ T cells did not express molecules suggestive of recent T-cell receptor (TCR) signaling. However, 41BB+PD-1+ T cells were still significantly enriched in tumors compared with circulation. Tumoral CD8+PD-1+ T cells commonly expressed additional inhibitory receptors, yet were mostly T-BEThi and EOMESlo, consistent with a less terminally exhausted state. Analysis of gene expression and rearranged TCR genes by deep sequencing suggested most patients have a limited tumor-reactive T-cell response. Multiplex immunohistochemistry revealed variable T-cell infiltration based on abundance and location, which may result in different mechanisms of immunotherapy resistance. Overall, the data support the need for therapies that either induce endogenous, or provide engineered, tumor-specific T-cell responses, and concurrently relieve suppressive mechanisms operative at the tumor site. Cancer Immunol Res; 5(11); 978-91. ©2017 AACR.
Insights
Pancreatic cancer is resistant to immunotherapy. Immune cells like T cells and macrophages are found in tumors, but their limited numbers and suppressive roles hinder treatment effectiveness. New therapies are needed to boost anti-tumor T cell responses.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Pancreatic ductal adenocarcinoma (PDA) is a lethal cancer resistant to therapies like immune checkpoint blockade.
- Understanding immune cell interactions within the tumor microenvironment is crucial for improving PDA treatment outcomes.
Purpose of the Study:
- To investigate immune cell characteristics, including T cell populations and immune checkpoint molecule expression, in resected human PDA.
- To identify mechanisms underlying immunotherapy resistance in PDA.
Main Methods:
- Multiplex immunohistochemistry was used to assess T cell number, localization, and phenotype.
- Analysis included CD8+ T cells, regulatory T cells (Foxp3+), PD-1+, PD-L1+, CD163+ macrophages, and granulocytes.
- Gene expression and T cell receptor (TCR) deep sequencing were performed.
Main Results:
- Significant interpatient variability in immune cell infiltration and phenotype was observed.
- Tertiary lymphoid structures (TLS) were enriched with CD8+ T cells, regulatory T cells, and PD-1+/PD-L1+ cells.
- Tumoral CD8+ T cells showed markers of a less exhausted state, but overall T cell responses appeared limited, with PD-L1 primarily on macrophages.
Conclusions:
- PDA exhibits complex immune infiltration patterns, with immune cells often localized in TLS.
- Limited tumor-specific T cell responses and the presence of immunosuppressive cells contribute to immunotherapy resistance.
- Future therapies should aim to induce or engineer tumor-specific T cell responses and overcome local immunosuppression.
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