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Reprogramming the tumor microenvironment leverages CD8+ T cell responses to a shared tumor/self antigen in ovarian cancer

  • Anna Mistarz
  • , Marta Winkler
  • , Sebastiano Battaglia
  • , Song Liu
  • , Alan Hutson
  • , Hanna Rokita
  • , Andrea Gambotto
  • , Kunle O. Odunsi
  • , Prashant K. Singh
  • , A. J.Robert McGray
  • , Jianmin Wang
  • , Danuta Kozbor
  • Roswell Park Cancer Institute
  • Jagiellonian University in Kraków
  • University of Pittsburgh
  • The University of Chicago

Research output: Contribution to journalArticlepeer-review

14 Scopus citations

Abstract

Tumor antigen-driven responses to weakly immunogenic self-antigens and neoantigens directly affect treatment efficacy following immunotherapy. Using orthotopically grown SV40 T antigen+ ovarian carcinoma in antigen-naive wild-type or TgMISIIR-TAg-Low transgenic mice expressing SV40 T antigen as a self-antigen, we investigated the impact of CXCR4-antagonist-armed oncolytic virotherapy on tumor progression and antitumor immunity. Immunostaining and single-cell RNA sequencing analyses of the peritoneal tumor microenvironment of untreated tumors in syngeneic wild-type mice revealed the presence of SV40 T antigen-specific CD8+ T cells, a balanced M1/M2 transcriptomic signature of tumor-associated macrophages, and immunostimulatory cancer-associated fibroblasts. This contrasted with polarized M2 tumor-associated macrophages, immunosuppressive cancer-associated fibroblasts, and poor immune activation in TgMISIIR-TAg-Low mice. Intraperitoneal delivery of CXCR4-antagonist-armed oncolytic vaccinia virus led to nearly complete depletion of cancer-associated fibroblasts, M1 polarization of macrophages, and generation of SV40 T antigen-specific CD8+ T cells in transgenic mice. Cell depletion studies revealed that the therapeutic effect of armed oncolytic virotherapy was dependent primarily on CD8+ cells. These results demonstrate that targeting the interaction between immunosuppressive cancer-associated fibroblasts and macrophages in the tolerogenic tumor microenvironment by CXCR4-A-armed oncolytic virotherapy induces tumor/self-specific CD8+ T cell responses and consequently increases therapeutic efficacy in an immunocompetent ovarian cancer model.

Original languageEnglish
Pages (from-to)230-248
Number of pages19
JournalMolecular Therapy Oncolytics
Volume28
DOIs
StatePublished - Mar 16 2023

Keywords

  • CXCR4 antagonist
  • immunotherapy
  • oncolityc vaccinia virus
  • ovarian cancer
  • tolerance
  • tumor microenvironment

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