| Literature DB >> 30619856 |
Bilal Omer1,2, Paul A Castillo1, Haruko Tashiro1, Thomas Shum1, Mai T A Huynh1, Mara Cardenas1, Miyuki Tanaka1, Andrew Lewis1, Tim Sauer1, Robin Parihar1,2, Natalia Lapteva1, Michael Schmueck-Henneresse1, Malini Mukherjee1, Stephen Gottschalk1,2,3, Cliona M Rooney1,2,3,4.
Abstract
The efficacy of T cells expressing chimeric antigen receptors (CARs) for solid tumors has been limited by insufficient CAR T cell expansion and persistence. The use of virus-specific T cells (VSTs) as carriers for CARs may overcome this limitation since CAR-VSTs can be boosted by viral vaccines or oncolytic viruses. However, there is limited understanding of the optimal combination of endodomains and their influence on the native T cell receptor (TCR) in VSTs. We therefore compared the function of GD2.CARs expressing the TCR zeta chain (ζ) alone or combined with endodomains from CD28 and 4-1BB in varicella zoster virus-specific (VZV) T cells. VZVSTs expressing GD2-CARs recognized VZV-derived peptides and killed GD2-expressing tumor cells. However, after repeated stimulation through their native TCR, the expansion of GD2-CAR.CD28ζ-VZVSTs was 3.3-fold greater (p < 0.001) than non-transduced VZVSTs, whereas GD2-CARζ- and GD2-CAR.41BBζ inhibited VZVST expansion (p < 0.01). Compared to control VZVSTs, GD2-CAR.ζ VZVSTs showed a greater frequency of apoptotic (p < 0.01) T cells, whereas prolonged downregulation of the native αβ TCR was observed in GD2-CAR.41BBζ VZVSTs (p < 0.001). We confirmed that CD28ζ can best maintain TCR function by expressing GD2.CARs in Epstein-Barr virus-specific T cells and CD19-CARs in VZVSTs. In response to CAR stimulation VSTs with CD28ζ endodomains also showed the greatest expansion (6 fold > GD2-CAR.41BBζ VZVSTs (p < 0.001), however anti-tumor efficacy was superior in GD2-CAR.41BBζ-VZVSTs. These findings demonstrate that CAR signaling domains can enhance or diminish the function of the native TCR and indicate that only CD28ζ may preserve the function of the native TCR in tonically signaling CAR-VSTs.Entities:
Keywords: adoptive cell therapy; chimeric antigen receptor; signaling domains; t cell receptor; virus specific t cells
Year: 2018 PMID: 30619856 PMCID: PMC6297364 DOI: 10.3389/fmed.2018.00343
Source DB: PubMed Journal: Front Med (Lausanne) ISSN: 2296-858X
Figure 1GD2.ζ and GD2.41BBζ inhibit and GD2.CD28ζ enhances the expansion of IFN-γ reactive VZVSTs after stimulation via the TCR. VZVSTs were generated as described (n = 7) and restimulated through the TCR on days 9 and 16 using pepmix-pulsed autologous activated T cells and irradiated K562cs cells. (A) CAR-transduced VZVSTs gated on the CAR and non-transduced (NT) VZVSTs were analyzed for CCR7 and CD45RO expression in CD8+ and CD4+ subsets on day 9. (B) The cells were counted after each TCR stimulation on days 9, 16, and 23 and the median cell numbers are shown. (C) Functional specificity: The frequency of T cells that produced IFN-γ in response to stimulation with VZV pepmixes was measured on the indicated culture days using ELISpot assays. (D) Expansion of viral antigen-specific T cells: The absolute numbers of virus-specific T cells was calculated based on the frequency of cells that secreted IFN-γ in response to viral pepmixes and the total fold expansion over 23 days. (E) The stability of CAR expression: The frequency of CAR-transduced cells was determined by flow cytometry on the days indicated (n = 7). (F) The proportion of CAR+ CD4+ and CD8+ cells after each TCR stimulation was determined on days 9, 16, and 23 by flow cytometry. Data for (A–E) are mean ± SD with *p < 0.05, **p < 0.01, ***p < 0.001, and ****p < 0.0001.
Figure 2GD2.ζ and GD2.41BBζ inhibit the expansion of IFN-γ reactive EBVSTs after stimulation via the TCR. EBV-specific T cells (EBVSTs) were generated as described (n = 5) and restimulated through the TCR on days 9 and 16 using pepmix-pulsed autologous activated T cells and irradiated K562cs cells. (A) Cells were counted after each TCR stimulation on days 9, 16, and 23 and the median cell numbers are shown. (B) Functional specificity: The frequency of T cells producing IFN-γ in response to stimulation with viral pepmixes was measured on the indicated culture days using ELIspot assays. (C) Enrichment of viral antigen-specific T cells: The absolute number of virus-specific T cells was calculated based on the frequency of cells that secreted IFN-γ in response to viral pepmixes and the total fold expansion. (D) The proportion of CAR+ CD4+ and CD8+ cells (except NT) after each TCR stimulation was determined on days 9, 16, and 23 by flow cytometry. (E) NT and CAR.VSTs specific for the EBV epitope CLG (LMP2) were generated by stimulation with CLG peptides and CLG-specific cells were identified on day 9 by pentamer staining as well as antibody staining for CD8 (gated on CAR+, except NT). The absolute number of CLG-specific cells was calculated by multiplying the proliferation and the percent of pentamer+ cells (n = 4). Data for (A–D) are mean ± SD [except (C) = SEM] with *p < 0.05, ***p < 0.001, and ****p < 0.0001.
Figure 3Increased apoptosis in GD2.ζ CAR modified VSTs peaks after TCR stimulation. (A) The viability of VSTs and ATCs was determined on day 9 using annexin V staining and 7-aminoactinomycin D (7-AAD). Cells were analyzed by flow cytometry with gating on CD3+/CAR+ lymphocytes. (A) Annexin V (y-axis) and 7-AAD staining in VSTs from one of four representative donors is shown. (B) The average proportion of annexin V+ cells in the CD4 and CD8 T cell subsets from the four donors is shown (mean ± SD). (C) VSTs (gated on CAR+ except for NT) were analyzed for Fas expression (CD95) on day 9 and the mean fluorescence intensity in the CD4+ and CD8+ subsets was determined (n = 4). (D) VSTs were generated as described and the supernatant was collected on day 9. The Fas ligand concentration was then determined by ELISA (n = 4; mean ± SD). (E) VSTs were generated and restimulated via the TCR using VZV pepmixes on days 9 and 16 (gray arrows) as described. The proportion of annexin V+ cells (of CAR+, except for NT) at different time points before and after stimulation is depicted in one donor. (A–E): **p < 0.01.
Figure 4Transducing VSTs with GD2.41BBζ results in activation and downregulation of their native TCR. (A) VZVSTs were generated and TCR expression was analyzed by flow cytometry on day 9. The CAR expression (y-axis) and TCR α/β expression (x-axis) of NT VSTs and GD2.41BBζ VSTs from one representative donor are shown after excluding γ/δ positive cells and lymphocyte gating by forward scatter (FSC) and side scatter (SSC). (B) The percentage of TCR α/β negative cells was determined in CD4+ and CD8+ T cell subsets after excluding γ/δ positive cells and gating on the CAR (except NT)—(n = 4; mean ± SD). (C) VZVSTs were stimulated with limiting dilutions of VZV pepmix and the number of IFN-γ-secreting cells at each concentration as measured by ELIspot is shown for one representative donor. (D) The mean values of forward scatter as a marker of cell size were determined by flow cytometry in VZVSTs and EBVSTs on day 9 (n = 4 EBV and n = 4 VZV). (E,F) The cells were stained for the activation marker CD25 and analyzed by flow cytometry (gated on CD8+ and CAR+, except NT). A representative donor is depicted in (E) and the mean fluorescent intensity of four donors is shown in (F). *p < 0.05, **p < 0.01 and ***p < 0.001.
Figure 5GD2.CD28ζ transduced VSTs kill target cells, secrete cytokine and show highest proliferation in response to CAR stimulation. For all experiments, CAR-VZVSTs were diluted with non-transduced (NT) cells to achieve 50% transduced cells in all CAR conditions. (A) Cytotoxicity: On day 9 of culture, NT and CAR-modified VSTs were added to firefly luciferase-labeled GD2-expressing LAN-1 neuroblastoma cells at the indicated ratios of effector to target cells. After a 4-h co-culture, the luminescence was quantified and T cell cytotoxicity was calculated. (B) Proliferation: On day 11 of culture and weekly thereafter, CAR-modified and NT VSTs were stimulated via the CAR using irradiated, GD2+ LAN-1 neuroblastoma cells at a 1:1 ratio (1:2 ratio of transduced cells to tumor cells) in the presence of low dose IL-2 (20 IU/mL). The cells were harvested and counted weekly. (C) Cytokine production: On day 11 of culture, VSTs were stimulated with irradiated LAN-1 neuroblastoma cells at a 1:1 ratio (1:2 ratio of transduced cells) in the absence of cytokines. After 24 h, the supernatant was collected and the concentrations of IFN-γ and TNF-α were measured by ELISA. Data are mean ± SD from for donors with *p < 0.05, **p < 0.01, and ***p < 0.001.