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Updated: Aug 11, 2025

Flow Cytometry-Based Isolation and Therapeutic Evaluation of Tumor-Infiltrating Lymphocytes in a Mouse Model of Pancreatic Cancer
Published on: January 17, 2025
IL18 Receptor Signaling Regulates Tumor-Reactive CD8+ T-cell Exhaustion via Activation of the IL2/STAT5/mTOR Pathway
Veronika Lutz1,2, Veronique M Hellmund1, Felix S R Picard2
1Department of Gastroenterology, Endocrinology, Metabolism and Infectiology, Center for Tumor and Immunology (ZTI), Philipps University Marburg, Marburg, Germany.
Abstract:
Intratumoral cytotoxic CD8+ T cells (CTL) enter a dysfunctional state characterized by expression of coinhibitory receptors, loss of effector function, and changes in the transcriptional landscape. Even though several regulators of T-cell exhaustion have been identified, the molecular mechanisms inducing T-cell exhaustion remain unclear. Here, we show that IL18 receptor (IL18R) signaling induces CD8+ T-cell exhaustion in a murine pancreatic cancer model. Adoptive transfer of Il18r-/- OT-1 CD8+ CTLs resulted in enhanced rejection of subcutaneous tumors expressing ovalbumin (OVA) as a model antigen (PancOVA), compared with wild-type OT-1 CTLs. Transferred intratumoral IL18R-deficient CTLs expressed higher levels of effector cytokines TNF and IFNγ and had reduced expression of coinhibitory receptors (PD-1, TIM-3, 2B4, LAG-3) and the transcription factors Eomes and TOX. Lower expression of coinhibitory receptors and TOX on IL18R-deficient versus IL18R-sufficient CD8+ T cells were confirmed in an orthotopic KPC model. IL18R-induced T-cell exhaustion was regulated by IL2/STAT5 and AKT/mTOR pathways, as demonstrated in an in vitro exhaustion assay. Concordantly, mice deficient in NLRP3, the molecular complex activating IL18, had decreased expression of coinhibitory receptors on intratumoral T cells and similar changes in signaling pathways at the transcriptome level. Thus, molecular pathways promoting T-cell exhaustion indicate an involvement of an NLRP3-expressing tumor microenvironment, which mediates IL18 release. The Cancer Genome Atlas analysis of patients with pancreatic carcinoma showed an association between NLRP3-mediated IL18 signaling and shorter survival. These findings indicate NLRP3-mediated IL18R signaling as a regulator of intratumoral T-cell exhaustion and a possible target for immunotherapy. See related Spotlight by Stromnes, p. 400.
Insights
Interleukin-18 receptor (IL18R) signaling drives CD8+ T-cell exhaustion in pancreatic cancer. Blocking IL18R signaling enhances anti-tumor immunity, suggesting IL18R as a potential immunotherapy target.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Mechanisms
Background:
- Intratumoral CD8+ cytotoxic T lymphocytes (CTLs) often become dysfunctional, exhibiting exhaustion phenotypes.
- While regulators of T-cell exhaustion are known, the precise molecular drivers remain elusive.
- Understanding these mechanisms is crucial for developing effective cancer immunotherapies.
Purpose of the Study:
- To investigate the role of Interleukin-18 receptor (IL18R) signaling in CD8+ T-cell exhaustion within a murine pancreatic cancer model.
- To elucidate the molecular pathways linking IL18R signaling to T-cell dysfunction and tumor immune evasion.
Main Methods:
- Adoptive transfer of IL18R-deficient (Il18r-/-) and wild-type OT-1 CD8+ CTLs into PancOVA tumor models.
- Analysis of T-cell phenotype, cytokine production (TNF, IFNγ), coinhibitory receptor expression (PD-1, TIM-3, 2B4, LAG-3), and transcription factors (Eomes, TOX).
- In vitro exhaustion assays, orthotopic KPC model validation, and transcriptome analysis of NLRP3-deficient mice and pancreatic carcinoma patient data (TCGA).
Main Results:
- IL18R deficiency in CD8+ CTLs enhanced tumor rejection and preserved effector functions.
- IL18R-deficient CTLs showed reduced coinhibitory receptor and TOX expression, alongside increased TNF and IFNγ production.
- NLRP3 deficiency mirrored these effects, implicating NLRP3-mediated IL18 release in T-cell exhaustion.
- TCGA analysis linked NLRP3-mediated IL18 signaling to poorer patient survival.
Conclusions:
- IL18R signaling is a key inducer of CD8+ T-cell exhaustion in pancreatic cancer.
- The NLRP3 inflammasome and subsequent IL18 release contribute to an immunosuppressive tumor microenvironment.
- Targeting NLRP3-mediated IL18R signaling presents a promising strategy for pancreatic cancer immunotherapy.
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