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Tropomodulin 3 Overexpression as a Marker for Platinum Resistance and Immune Infiltration in Ovarian Cancer
Published on: August 2, 2024
Tumor-infiltrating programmed death receptor-1+ dendritic cells mediate immune suppression in ovarian cancer
James Krempski1, Lavakumar Karyampudi, Marshall D Behrens
1Department of Immunology, Mayo Clinic, Rochester, MN 55905, USA.
Abstract:
Within the ovarian cancer microenvironment, there are several mechanisms that suppress the actions of antitumor immune effectors. Delineating the complex immune microenvironment is an important goal toward developing effective immune-based therapies. A dominant pathway of immune suppression in ovarian cancer involves tumor-associated and dendritic cell (DC)-associated B7-H1. The interaction of B7-H1 with PD-1 on tumor-infiltrating T cells is a widely cited theory of immune suppression involving B7-H1 in ovarian cancer. Recent studies suggest that the B7-H1 ligand, programmed death receptor-1 (PD-1), is also expressed on myeloid cells, complicating interpretations of how B7-H1 regulates DC function in the tumor. In this study, we found that ovarian cancer-infiltrating DCs progressively expressed increased levels of PD-1 over time in addition to B7-H1. These dual-positive PD-1(+) B7-H1(+) DCs have a classical DC phenotype (i.e., CD11c(+)CD11b(+)CD8(-)), but are immature, suppressive, and respond poorly to danger signals. Accumulation of PD-1(+)B7-H1(+) DCs in the tumor was associated with suppression of T cell activity and decreased infiltrating T cells in advancing tumors. T cell suppressor function of these DCs appeared to be mediated by T cell-associated PD-1. In contrast, ligation of PD-1 expressed on the tumor-associated DCs suppressed NF-κB activation, release of immune regulatory cytokines, and upregulation of costimulatory molecules. PD-1 blockade in mice bearing ovarian cancer substantially reduced tumor burden and increased effector Ag-specific T cell responses. Our results reveal a novel role of tumor infiltrating PD-1(+)B7-H1(+) DCs in mediating immune suppression in ovarian cancer.
Insights
Ovarian cancer immune suppression involves dendritic cells (DCs) expressing PD-1 and B7-H1. Blocking PD-1 reduced tumor growth and enhanced anti-tumor T cell responses, revealing a new therapeutic target.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Ovarian cancer features immune-suppressive mechanisms within its microenvironment.
- Tumor-associated B7-H1 interacting with PD-1 on T cells is a known immune suppression pathway.
- PD-1 expression on myeloid cells, including dendritic cells (DCs), complicates understanding of B7-H1's role.
Purpose of the Study:
- To investigate the role of PD-1 and B7-H1 expression on DCs in the ovarian cancer microenvironment.
- To determine how dual-positive PD-1(+) B7-H1(+) DCs contribute to immune suppression.
- To evaluate the therapeutic potential of PD-1 blockade in ovarian cancer.
Main Methods:
- Characterization of ovarian cancer-infiltrating DCs for PD-1 and B7-H1 expression.
- Assessment of the phenotype and function of dual-positive PD-1(+) B7-H1(+) DCs.
- Evaluation of T cell activity and infiltration in the presence of these DCs.
- In vivo studies using PD-1 blockade in a mouse model of ovarian cancer.
Main Results:
- Ovarian cancer-infiltrating DCs progressively expressed increased levels of both PD-1 and B7-H1.
- Dual-positive PD-1(+) B7-H1(+) DCs were immature, suppressive, and poorly responsive to danger signals.
- Accumulation of these DCs correlated with suppressed T cell activity and reduced T cell infiltration.
- PD-1 blockade in mice significantly reduced tumor burden and enhanced Ag-specific T cell responses.
Conclusions:
- Tumor-infiltrating PD-1(+) B7-H1(+) DCs play a novel role in mediating immune suppression in ovarian cancer.
- Targeting the PD-1 pathway on these DCs represents a promising strategy for ovarian cancer immunotherapy.
- Understanding DC-PD-1 interactions is crucial for developing effective immune-based therapies against ovarian cancer.
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