Induction of a central memory and stem cell memory phenotype in functionally active CD4+ and CD8+ CAR T cells produced in an automated good manufacturing practice system for the treatment of CD19+ acute lymphoblastic leukemia
- PMID: 29605883
- PMCID: PMC11028239
- DOI: 10.1007/s00262-018-2155-7
Induction of a central memory and stem cell memory phenotype in functionally active CD4+ and CD8+ CAR T cells produced in an automated good manufacturing practice system for the treatment of CD19+ acute lymphoblastic leukemia
Abstract
Relapsed/refractory B-precursor acute lymphoblastic leukemia (pre-B ALL) remains a major therapeutic challenge. Chimeric antigen receptor (CAR) T cells are promising treatment options. Central memory T cells (Tcm) and stem cell-like memory T cells (Tscm) are known to promote sustained proliferation and persistence after T-cell therapy, constituting essential preconditions for treatment efficacy. Therefore, we set up a protocol for anti-CD19 CAR T-cell generation aiming at high Tcm/Tscm numbers. 100 ml peripheral blood from pediatric pre-B ALL patients was processed including CD4+/CD8+-separation, T-cell activation with modified anti-CD3/-CD28 reagents and transduction with a 4-1BB-based second generation CAR lentiviral vector. The process was performed on a closed, automated device requiring additional manual/open steps under clean room conditions. The clinical situation of these critically ill and refractory patients with leukemia leads to inconsistent cellular compositions at start of the procedure including high blast counts and low T-cell numbers with exhausted phenotype. Nevertheless, a robust T-cell product was achieved (mean CD4+ = 50%, CD8+ = 39%, transduction = 27%, Tcm = 50%, Tscm = 46%). Strong proliferative potential (up to > 100-fold), specific cytotoxicity and low expression of co-inhibitory molecules were documented. CAR T cells significantly released TH1 cytokines IFN-γ, TNF-α and IL-2 upon target-recognition. In conclusion, partly automated GMP-generation of CAR T cells from critically small blood samples was feasible with a new stimulation protocol that leads to high functionality and expansion potential, balanced CD4/CD8 ratios and a conversion to a Tcm/Tscm phenotype.
Keywords: CAR T cells; GMP production; Pediatric ALL; Tscm/cm.
Conflict of interest statement
Andrew Didier Kaiser and Mario Assenmacher are employees of Miltenyi Biotec. This work has been performed as a collaboration between Tobias Feuchtinger, Franziska Blaeschke and Miltenyi Biotec. Miltenyi Biotec provided reagent free of charge. All other authors declare that they have no conflict of interest.
Figures
) procedures are indicated in the lower part of the figure. Cells are cultured in safety level S2. Due to multiple washing and dilution steps, the final product is downscaled to safety level S1. PBMC peripheral blood mononuclear cells, PB peripheral blood, CAR chimeric antigen receptor, GMP good manufacturing practice
References
-
- Blaeschke F, Kaeuferle T, Feucht J, Weber D, Lotfi R, Kaiser A, Assenmacher M, Doering M, Feuchtinger T (2016) Defined central memory and stem memory T cell phenotype of CD4 and CD8 CAR T cells for the treatment of CD19+ acute lymphoblastic leukemia in an automated closed system. In: 58th ASH annual meeting and exposition. Blood, 128(22) (Abstract 4558)
-
- Stenger D, Blaeschke F, Kaeuferle T, Willier S, Lotfi R, Kaiser A, Assenmacher M, Doering M, Feucht J, Feuchtinger T (2017) Automated generation of central memory and stem cell-like memory CD19-specific CAR T cells in a closed, GMP compatible system. In: Cellular therapy, international symposium Erlangen, Erlangen (Abstract 134)
-
- Blaeschke F, Stenger D, Kaeuferle T, Willier S, Lotfi R, Kaiser A, Assenmacher M, Doering M, Feucht J, Feuchtinger T (2017) CD19-specific CAR T cells with a central memory and stem memory phenotype—automated generation in a closed, GMP-compatible system from peripheral blood of pediatric patients with acute lymphoblastic leukemia. In: 43rd annual meeting of the European Society for Blood and Marrow Transplantation (EBMT), Marseille (Abstract)
-
- Blaeschke F, Stenger D, Kaeuferle T, Willier S, Lotfi R, Kaiser A, Assenmacher M, Doering M, Feucht J, Feuchtinger T (2017) Induction of a central memory and stem cell memory phenotype in functionally active CD4+ and CD8+ CAR T cells produced in an automated GMP system for the treatment of CD19+ acute lymphoblastic leukemia. In: Annual meeting of Paediatrische Arbeitsgemeinschaft fuer Stammzelltransplantation and Zelltherapie (PAS&ZT), Hamburg (Abstract) - PMC - PubMed
-
- Lee DW, Kochenderfer JN, Stetler-Stevenson M, Cui YK, Delbrook C, Feldman SA, Fry TJ, Orentas R, Sabatino M, Shah NN, Steinberg SM, Stroncek D, Tschernia N, Yuan C, Zhang H, Zhang L, Rosenberg SA, Wayne AS, Mackall CL. T cells expressing CD19 chimeric antigen receptors for acute lymphoblastic leukaemia in children and young adults: a phase 1 dose-escalation trial. Lancet. 2015;385(9967):517–528. doi: 10.1016/S0140-6736(14)61403-3. - DOI - PMC - PubMed
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