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Generation of Orthotopic Pancreatic Tumors and Ex vivo Characterization of Tumor-Infiltrating T Cell Cytotoxicity
Published on: December 7, 2019
Modulation of Type I Interferon Responses to Influence Tumor-Immune Cross Talk in PDAC
Carlotta Cattolico1,2, Peter Bailey2,3,4, Simon T Barry1
1Bioscience, Early Oncology, AstraZeneca, Cambridge, United Kingdom.
Abstract:
Immunotherapy has revolutionized the treatment of many cancer types. However, pancreatic ductal adenocarcinomas (PDACs) exhibit poor responses to immune checkpoint inhibitors with immunotherapy-based trials not generating convincing clinical activity. PDAC tumors often have low infiltration of tumor CD8+ T cells and a highly immunosuppressive microenvironment. These features classify PDAC as immunologically "cold." However, the presence of tumor T cells is a favorable prognostic feature in PDAC. Intrinsic tumor cell properties govern interactions with the immune system. Alterations in tumor DNA such as genomic instability, high tumor mutation burden, and/or defects in DNA damage repair are associated with responses to both immunotherapy and chemotherapy. Cytotoxic or metabolic stress produced by radiation and/or chemotherapy can act as potent immune triggers and prime immune responses. Damage- or stress-mediated activation of nucleic acid-sensing pathways triggers type I interferon (IFN-I) responses that activate innate immune cells and natural killer cells, promote maturation of dendritic cells, and stimulate adaptive immunity. While PDAC exhibits intrinsic features that have the potential to engage immune cells, particularly following chemotherapy, these immune-sensing mechanisms are ineffective. Understanding where defects in innate immune triggers render the PDAC tumor-immune interface less effective, or how T-cell function is suppressed will help develop more effective treatments and harness the immune system for durable outcomes. This review will focus on the pivotal role played by IFN-I in promoting tumor cell-immune cell cross talk in PDAC. We will discuss how PDAC tumor cells bypass IFN-I signaling pathways and explore how these pathways can be co-opted or re-engaged to enhance the therapeutic outcome.
Insights
Pancreatic cancer (PDAC) is immunotherapy-resistant due to its "cold" tumor microenvironment. Enhancing type I interferon (IFN-I) signaling is crucial for activating anti-tumor immunity and improving treatment outcomes.
Area of Science:
- Oncology
- Immunology
- Cancer Research
Background:
- Pancreatic ductal adenocarcinomas (PDAC) show limited response to immunotherapy, characterized by low CD8+ T cell infiltration and an immunosuppressive tumor microenvironment, classifying them as immunologically "cold."
- Despite intrinsic tumor properties that can engage immune cells, particularly after chemotherapy, PDAC exhibits ineffective immune-sensing mechanisms.
Purpose of the Study:
- To review the role of type I interferon (IFN-I) in PDAC tumor-immune cell crosstalk.
- To explore how PDAC tumor cells evade IFN-I signaling and how these pathways can be therapeutically re-engaged.
Main Methods:
- Literature review focusing on PDAC immunology and immunotherapy.
- Analysis of mechanisms underlying IFN-I pathway activation and evasion in PDAC.
- Exploration of strategies to enhance IFN-I signaling for improved therapeutic outcomes.
Main Results:
- PDAC's "cold" phenotype is linked to suppressed innate immune triggers and impaired T cell function.
- Damage or stress from treatments like chemotherapy can activate nucleic acid-sensing pathways, inducing IFN-I responses crucial for adaptive immunity.
- PDAC cells possess mechanisms to bypass or inactivate IFN-I signaling, contributing to treatment resistance.
Conclusions:
- Understanding defects in IFN-I pathways and T cell suppression is key to developing effective PDAC immunotherapies.
- Re-engaging or co-opting IFN-I signaling pathways holds promise for enhancing anti-tumor immunity and achieving durable responses in PDAC patients.
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