Activating and Propagating Polyclonal Gamma Delta T Cells with Broad Specificity for Malignancies
Overview
Authors
Affiliations
Purpose: To activate and propagate populations of γδ T cells expressing polyclonal repertoire of γ and δ T-cell receptor (TCR) chains for adoptive immunotherapy of cancer, which has yet to be achieved.
Experimental Design: Clinical-grade artificial antigen-presenting cells (aAPC) derived from K562 tumor cells were used as irradiated feeders to activate and expand human γδ T cells to clinical scale. These cells were tested for proliferation, TCR expression, memory phenotype, cytokine secretion, and tumor killing.
Results: γδ T-cell proliferation was dependent upon CD137L expression on aAPC and addition of exogenous IL2 and IL21. Propagated γδ T cells were polyclonal as they expressed TRDV1, TRDV2-2, TRDV3, TRDV5, TRDV7, and TRDV8 with TRGV2, TRGV3F, TRGV7, TRGV8, TRGV9*A1, TRGV10*A1, and TRGV11 TCR chains. IFNγ production by Vδ1, Vδ2, and Vδ1(neg)Vδ2(neg) subsets was inhibited by pan-TCRγδ antibody when added to cocultures of polyclonal γδ T cells and tumor cell lines. Polyclonal γδ T cells killed acute and chronic leukemia, colon, pancreatic, and ovarian cancer cell lines, but not healthy autologous or allogeneic normal B cells. Blocking antibodies demonstrated that polyclonal γδ T cells mediated tumor cell lysis through combination of DNAM1, NKG2D, and TCRγδ. The adoptive transfer of activated and propagated γδ T cells expressing polyclonal versus defined Vδ TCR chains imparted a hierarchy (polyclonal>Vδ1>Vδ1(neg)Vδ2(neg)>Vδ2) of survival of mice with ovarian cancer xenografts.
Conclusions: Polyclonal γδ T cells can be activated and propagated with clinical-grade aAPCs and demonstrate broad antitumor activities, which will facilitate the implementation of γδ T-cell cancer immunotherapies in humans.
Gamma delta T cells in cancer therapy: from tumor recognition to novel treatments.
Luo X, Lv Y, Yang J, Long R, Qiu J, Deng Y Front Med (Lausanne). 2025; 11:1480191.
PMID: 39748921 PMC: 11693687. DOI: 10.3389/fmed.2024.1480191.
A new effLuc/Kate dual reporter allele for tumor imaging in mice.
Bakiri L, Tichet M, Marques C, Thomsen M, Allen E, Allen E Dis Model Mech. 2025; 18(1).
PMID: 39745082 PMC: 11789939. DOI: 10.1242/dmm.052130.
Function and Spatial Organization of Tumor-Invasive Human γδ T Cells-What Do We Know?.
Wistuba-Hamprecht K, Oberg H, Wesch D Eur J Immunol. 2024; 55(1):e202451075.
PMID: 39623788 PMC: 11739682. DOI: 10.1002/eji.202451075.
Bridge J, Johnson M, Kim J, Wenthe S, Krueger J, Wick B bioRxiv. 2024; .
PMID: 39464114 PMC: 11507710. DOI: 10.1101/2024.09.03.611042.
B7-H3-Targeted CAR-Vδ1T Cells Exhibit Potent Broad-Spectrum Activity against Solid Tumors.
Jiang L, You F, Wu H, Qi C, Xiang S, Zhang P Cancer Res. 2024; 84(23):4066-4080.
PMID: 39240694 PMC: 11609632. DOI: 10.1158/0008-5472.CAN-24-0195.