Breast Cancer Stem Cell–Derived Tumors Escape from γδ T-cell Immunosurveillance In Vivo by Modulating γδ T-cell Ligands

Author:

Raute Katrin1234ORCID,Strietz Juliane123ORCID,Parigiani Maria Alejandra123ORCID,Andrieux Geoffroy5ORCID,Thomas Oliver S.124ORCID,Kistner Klaus M.123ORCID,Zintchenko Marina123ORCID,Aichele Peter3ORCID,Hofmann Maike6ORCID,Zhou Houjiang7ORCID,Weber Wilfried12ORCID,Boerries Melanie58ORCID,Swamy Mahima7ORCID,Maurer Jochen9ORCID,Minguet Susana123ORCID

Affiliation:

1. 1Faculty of Biology, University of Freiburg, Freiburg, Germany.

2. 2Signalling Research Centres BIOSS and CIBSS, University of Freiburg, Freiburg, Germany.

3. 3Center of Chronic Immunodeficiency (CCI) and Institute for Immunodeficiency, University Clinics and Medical Faculty, Freiburg, Germany.

4. 4Spemann Graduate School of Biology and Medicine (SGBM), University of Freiburg, Freiburg, Germany.

5. 5Institute of Medical Bioinformatics and Systems Medicine, Medical Center - University of Freiburg, Faculty of Medicine, University of Freiburg, Freiburg, Germany.

6. 6Department of Medicine II (Gastroenterology, Hepatology, Endocrinology and Infectious Diseases), Freiburg University Medical Center, Faculty of Medicine, University of Freiburg, Freiburg, Germany.

7. 7Medical Research Council Protein Phosphorylation and Ubiquitylation Unit, University of Dundee, Dundee, United Kingdom.

8. 8German Cancer Consortium (DKTK) Partner Site Freiburg, German Cancer Research Center (DKFZ), Heidelberg, Germany.

9. 9Department of Gynecology and Obstetrics, University Hospital RWTH Aachen, Aachen, Germany.

Abstract

Abstract There are no targeted therapies for patients with triple-negative breast cancer (TNBC). TNBC is enriched in breast cancer stem cells (BCSC), which play a key role in metastasis, chemoresistance, relapse, and mortality. γδ T cells hold great potential in immunotherapy against cancer and might provide an approach to therapeutically target TNBC. γδ T cells are commonly observed to infiltrate solid tumors and have an extensive repertoire of tumor-sensing mechanisms, recognizing stress-induced molecules and phosphoantigens (pAgs) on transformed cells. Herein, we show that patient-derived triple-negative BCSCs are efficiently recognized and killed by ex vivo expanded γδ T cells from healthy donors. Orthotopically xenografted BCSCs, however, were refractory to γδ T-cell immunotherapy. We unraveled concerted differentiation and immune escape mechanisms: xenografted BCSCs lost stemness, expression of γδ T-cell ligands, adhesion molecules, and pAgs, thereby evading immune recognition by γδ T cells. Indeed, neither promigratory engineered γδ T cells, nor anti–PD-1 checkpoint blockade, significantly prolonged overall survival of tumor-bearing mice. BCSC immune escape was independent of the immune pressure exerted by the γδ T cells and could be pharmacologically reverted by zoledronate or IFNα treatment. These results pave the way for novel combinatorial immunotherapies for TNBC.

Funder

Deutsche Forschungsgemeinschaft

KWF Kankerbestrijding

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Immunology

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