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Updated: Jun 26, 2025

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
Expression of CD39 is associated with T cell exhaustion in ovarian cancer and its blockade reverts T cell dysfunction
Marius Witt1, Leticia Oliveira-Ferrer2, Friedrich Koch-Nolte3
1Department of Oncology, Hematology and Bone Marrow Transplantation with Section Pneumology, Hubertus Wald University Cancer Center, Hamburg, Germany.
Abstract:
Immune exhaustion is a hallmark of ovarian cancer. Using multiparametric flow cytometry, the study aimed to analyze protein expression of novel immunological targets on CD3+ T cells isolated from the peripheral blood (n = 20), malignant ascites (n = 16), and tumor tissue (n = 6) of patients with ovarian cancer (OVCA). The study revealed an increased proportion of effector memory CD8+ T cells in OVCA tissue and malignant ascites. An OVCA-characteristic PD-1high CD8+ T cell population was detected, which differed from PD-1lowCD8+ T cells by increased co-expression of TIGIT, CD39, and HLA-DR. In addition, these OVCA-characteristic CD8+ T cells showed reduced expression of the transcription factor TCF-1, which may also indicate reduced effector function and memory formation. On the contrary, the transcription factor TOX, which significantly regulates terminal T cell-exhaustion, was found more frequently in these cells. Further protein and gene analysis showed that CD39 and CD73 were also expressed on OVCA tumor cells isolated from solid tumors (n = 14) and malignant ascites (n = 9). In the latter compartment, CD39 and CD73 were also associated with the expression of the "don't eat me" molecule CD24 on tumor cells. Additionally, ascites-derived CD24+EpCAM+ tumor cells showed a higher frequency of CD39+ or CD73+ cells. Furthermore, CD39 expression was associated with unfavorable clinical parameters. Expression of CD39 on T cells was upregulated through CD3/CD28 stimulation and its blockade by a newly developed nanobody construct resulted in increased proliferation (eFluor), activation (CD25 and CD134), and production of cytotoxic cytokines (IFN-γ, TNF-α, and granzyme-B) of CD8+ T cells.
Insights
Immune exhaustion in ovarian cancer involves specific CD8+ T cells expressing PD-1high, TIGIT, CD39, and HLA-DR. Blocking CD39 on these cells enhances T cell function and cytokine production, offering a potential therapeutic target.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Immune exhaustion is a significant factor in ovarian cancer progression.
- Understanding T cell dysfunction is crucial for developing effective cancer immunotherapies.
Purpose of the Study:
- To analyze novel immunological targets on T cells in ovarian cancer patients.
- To characterize the phenotype and function of exhausted T cells in the tumor microenvironment.
Main Methods:
- Multiparametric flow cytometry was used to analyze protein expression on CD3+ T cells from peripheral blood, ascites, and tumor tissue.
- Gene and protein analysis identified targets on ovarian cancer cells.
- Functional assays assessed the impact of CD39 blockade on T cell activity.
Main Results:
- An increased proportion of effector memory CD8+ T cells was observed in ovarian cancer tissue and ascites.
- A distinct PD-1high CD8+ T cell population co-expressing TIGIT, CD39, and HLA-DR was identified.
- These cells showed reduced TCF-1 and increased TOX expression, indicative of exhaustion.
- CD39 and CD73 were found on ovarian cancer cells, associated with CD24 and unfavorable clinical parameters.
- Blocking CD39 on T cells enhanced proliferation, activation, and cytotoxic cytokine production.
Conclusions:
- Ovarian cancer is characterized by a specific exhausted CD8+ T cell population with distinct molecular markers.
- CD39 and CD73 on tumor cells may contribute to immune evasion.
- CD39 blockade represents a promising strategy to reinvigorate anti-tumor T cell responses in ovarian cancer.

