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Vaccine-instructed intratumoral IFN-γ enables regression of autochthonous mouse prostate cancer in allogeneic T-cell transplantation

Authors :
Rodrigo Hess Michelini
Joanna Listopad
Tabea Sturmheit
Massimo Freschi
Matteo Bellone
Anna Mondino
Teresa Manzo
Thomas Blankenstein
Veronica Basso
Martina Rocchi
Source :
Cancer research. 73(15)
Publication Year :
2013

Abstract

Vaccination can synergize with transplantation of allogeneic hematopoietic stem cells to cure hematologic malignancies, but the basis for this synergy is not understood to the degree where such approaches could be effective for treating solid tumors. We investigated this issue in a transgenic mouse model of prostate cancer treated by transplantation of a nonmyeloablative MHC-matched, single Y chromosome–encoded, or multiple minor histocompatibility antigen-mismatched hematopoietic cell preparation. Here, we report that tumor-directed vaccination after allogeneic hematopoietic stem cell transplantation and donor lymphocyte infusion is essential for acute graft versus tumor responses, tumor regression, and prolonged survival. Vaccination proved essential for generation of CD8+ IFN-γ+ tumor-directed effector cells in secondary lymphoid organs and also for IFN-γ+ upregulation at the tumor site, which in turn instructed local expression of proinflammatory chemokines and intratumoral recruitment of donor-derived T cells for disease regression. Omitting vaccination, transplanting IFN-γ–deficient donor T cells, or depleting alloreactive T cells all compromised intratumoral IFN-γ–driven inflammation and lymphocyte infiltration, abolishing antitumor responses and therapeutic efficacy of the combined approach. Our findings argue that posttransplant tumor-directed vaccination is critical to effectively direct donor T cells to the tumor site in cooperation with allogeneic hematopoietic cell transplantation. Cancer Res; 73(00); 4641–52. ©2013 AACR.

Details

ISSN :
15387445
Volume :
73
Issue :
15
Database :
OpenAIRE
Journal :
Cancer research
Accession number :
edsair.doi.dedup.....2a968a1bce6ed99a83e1df1759bc888d