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Updated: Nov 19, 2025

Flow Cytometry-Based Isolation and Therapeutic Evaluation of Tumor-Infiltrating Lymphocytes in a Mouse Model of Pancreatic Cancer
Published on: January 17, 2025
Antitumor T-cell Immunity Contributes to Pancreatic Cancer Immune Resistance
Reham Ajina1, Zoe X Malchiodi1, Allison A Fitzgerald1
1Department of Oncology and Lombardi Comprehensive Cancer Center, Georgetown University Medical Center, Washington, District of Columbia.
Abstract:
Pancreatic ductal adenocarcinoma (PDAC) is the third leading cause of cancer death in the United States. Pancreatic tumors are minimally infiltrated by T cells and are largely refractory to immunotherapy. Accordingly, the role of T-cell immunity in pancreatic cancer has been somewhat overlooked. Here, we hypothesized that immune resistance in pancreatic cancer was induced in response to antitumor T-cell immune responses and that understanding how pancreatic tumors respond to immune attack may facilitate the development of more effective therapeutic strategies. We now provide evidence that T-cell-dependent host immune responses induce a PDAC-derived myeloid mimicry phenomenon and stimulate immune resistance. Three KPC mouse models of pancreatic cancer were used: the mT3-2D (Kras+/LSL-G12D; Trp53+/LSL-R172H; Pdx1-Cre) subcutaneous and orthotopic models, as well as the KP1 (p48-CRE/LSL-Kras/Trp53 flox/flox ) subcutaneous model. KPC cancer cells were grown in immunocompetent and immunodeficient C57BL/6 mice and analyzed to determine the impact of adaptive immunity on malignant epithelial cells, as well as on whole tumors. We found that induced T-cell antitumor immunity, via signal transducer and activator of transcription 1 (STAT1), stimulated malignant epithelial pancreatic cells to induce the expression of genes typically expressed by myeloid cells and altered intratumoral immunosuppressive myeloid cell profiles. Targeting the Janus Kinase (JAK)/STAT signaling pathway using the FDA-approved drug ruxolitinib overcame these tumor-protective responses and improved anti-PD-1 therapeutic efficacy. These findings provide future directions for treatments that specifically disable this mechanism of resistance in PDAC.
Insights
Pancreatic cancer cells resist immunotherapy by mimicking myeloid cells, a process driven by T-cell responses. Targeting the JAK/STAT pathway with ruxolitinib overcomes this resistance, enhancing anti-PD-1 therapy efficacy in pancreatic ductal adenocarcinoma.
Area of Science:
- Oncology
- Immunology
- Cancer Research
Background:
- Pancreatic ductal adenocarcinoma (PDAC) is a leading cause of cancer mortality.
- PDAC exhibits minimal T-cell infiltration and is often resistant to immunotherapy.
- The role of T-cell immunity in PDAC has been underexplored.
Purpose of the Study:
- To investigate the mechanisms by which pancreatic tumors resist T-cell-mediated immune attack.
- To determine if T-cell responses induce immune resistance in PDAC.
- To identify therapeutic strategies to overcome immune resistance in PDAC.
Main Methods:
- Utilized three KPC mouse models (mT3-2D and KP1) of pancreatic cancer.
- Grew KPC cancer cells in immunocompetent and immunodeficient mice.
- Analyzed the impact of adaptive immunity on tumor cells and whole tumors.
- Investigated the role of signal transducer and activator of transcription 1 (STAT1) signaling.
Main Results:
- T-cell-dependent immune responses induce a myeloid mimicry phenomenon in PDAC cells.
- STAT1 activation in malignant epithelial cells leads to myeloid gene expression.
- This mimicry alters intratumoral myeloid cell profiles, promoting immunosuppression.
- Targeting the Janus Kinase (JAK)/STAT pathway with ruxolitinib reversed these resistance mechanisms.
Conclusions:
- T-cell immunity can paradoxically induce immune resistance in PDAC through myeloid mimicry.
- The JAK/STAT pathway is a critical mediator of this resistance mechanism.
- Ruxolitinib treatment overcomes PDAC immune resistance and enhances anti-PD-1 therapy.
- Targeting this pathway offers a promising strategy for improving PDAC immunotherapy.
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