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  • γδ T-cell Receptors Derived from Breast Cancer-Infiltrating T Lymphocytes Mediate Antitumor Reactivity.

γδ T-cell Receptors Derived from Breast Cancer-Infiltrating T Lymphocytes Mediate Antitumor Reactivity.

Cancer immunology research (2020-02-06)
Anke Janssen, Jose Villacorta Hidalgo, Dennis X Beringer, Sanne van Dooremalen, Febilla Fernando, Eline van Diest, Antonela R Terrizi, Peter Bronsert, Sylvia Kock, Annette Schmitt-Gräff, Martin Werner, Kerstin Heise, Marie Follo, Trudy Straetemans, Zsolt Sebestyen, Dmitry M Chudakov, Sofya A Kasatskaya, Felix E Frenkel, Sarina Ravens, Eric Spierings, Immo Prinz, Ralf Küppers, Miroslav Malkovsky, Paul Fisch, Jürgen Kuball
ABSTRACT

γδ T cells in human solid tumors remain poorly defined. Here, we describe molecular and functional analyses of T-cell receptors (TCR) from tumor-infiltrating γδ T lymphocytes (γδ TIL) that were in direct contact with tumor cells in breast cancer lesions from archival material. We observed that the majority of γδ TILs harbored a proinflammatory phenotype and only a minority associated with the expression of IL17. We characterized TCRγ or TCRδ chains of γδ TILs and observed a higher proportion of Vδ2+ T cells compared with other tumor types. By reconstructing matched Vδ2- TCRγ and TCRδ pairs derived from single-cell sequencing, our data suggest that γδ TILs could be active against breast cancer and other tumor types. The reactivity pattern against tumor cells depended on both the TCRγ and TCRδ chains and was independent of additional costimulation through other innate immune receptors. We conclude that γδ TILs can mediate tumor reactivity through their individual γδ TCR pairs and that engineered T cells expressing TCRγ and δ chains derived from γδ TILs display potent antitumor reactivity against different cancer cell types and, thus, may be a valuable tool for engineering immune cells for adoptive cell therapies.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
EGF human, Animal-component free, recombinant, expressed in E. coli, ≥98% (SDS-PAGE), ≥98% (HPLC), suitable for cell culture
Sigma-Aldrich
Insulin human, recombinant, expressed in yeast (proprietary host)