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.

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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