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GMP-Compliant Manufacturing of NKG2D CAR Memory T Cells Using CliniMACS Prodigy
Lucía Fernández1, Adrián Fernández1, Isabel Mirones2
1Hematological Malignancies H12O, Clinical Research Unit, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.
Abstract:
Natural killer group 2D (NKG2D) is a natural killer (NK) cell-activating receptor that recognizes different stress-induced ligands that are overexpressed in a variety of childhood and adult tumors. NKG2D chimeric antigen receptor (CAR) T cells have shown potent anticancer effects against different cancer types. A second-generation NKG2D CAR was generated by fusing full-length human NKG2D to 4-1BB costimulatory molecule and CD3ζ signaling domain. Patient-derived CAR T cells show limitations including inability to manufacture CAR T cells from the patients' own T cells, disease progression, and death prior to return of engineered cells. The use of allogeneic T cells for CAR therapy could be an attractive alternative, although undesirable graft vs. host reactions may occur. To avoid such adverse effects, we used CD45RA- memory T cells, a T-cell subset with less alloreactivity, as effector cells to express NKG2D CAR. In this study, we developed a protocol to obtain large-scale NKG2D CAR memory T cells for clinical use by using CliniMACS Prodigy, an automated closed system compliant with Good Manufacturing Practice (GMP) guidelines. CD45RA+ fraction was depleted from healthy donors' non-mobilized apheresis using CliniMACS CD45RA Reagent and CliniMACS Plus device. A total of 108 CD45RA- cells were cultured in TexMACS media supplemented with 100 IU/mL IL-2 and activated at day 0 with T Cell TransAct. Then, we used NKG2D-CD8TM-4-1BB-CD3ζ lentiviral vector for cell transduction (MOI = 2). NKG2D CAR T cells expanded between 10 and 13 days. Final cell products were analyzed to comply with the specifications derived from the quality and complementary controls carried out in accordance with the instructions of the Spanish Regulatory Agency of Medicines and Medical Devices (AEMPS) for the manufacture of investigational advanced therapy medicinal products (ATMPs). We performed four validations. The manufacturing protocol here described achieved large numbers of viable NKG2D CAR memory T cells with elevated levels of NKG2D CAR expression and highly cytotoxic against Jurkat and 531MII tumor target cells. CAR T cell final products met release criteria, except for one showing myc overexpression and another with viral copy number higher than five. Manufacturing of clinical-grade NKG2D CAR memory T cells using CliniMACS Prodigy is feasible and reproducible, widening clinical application of CAR T cell therapies.
Insights
This study developed a Good Manufacturing Practice (GMP) compliant protocol for large-scale production of Natural Killer group 2D (NKG2D) chimeric antigen receptor (CAR) T cells using memory T cells. The feasible and reproducible manufacturing process yields viable, cytotoxic NKG2D CAR T cells for wider clinical application.
Area of Science:
- Immunology
- Cell Therapy
- Oncology
Background:
- Natural Killer group 2D (NKG2D) receptor targets stress-induced ligands on tumors.
- NKG2D chimeric antigen receptor (CAR) T cells demonstrate potent anticancer activity.
- Patient-derived CAR T cells face manufacturing and efficacy limitations.
Purpose of the Study:
- To develop a scalable Good Manufacturing Practice (GMP)-compliant protocol for manufacturing NKG2D CAR T cells.
- To utilize allogeneic CD45RA- memory T cells to minimize graft-versus-host reactions.
- To enable broader clinical application of CAR T cell therapy.
Main Methods:
- Depletion of CD45RA+ cells from healthy donor apheresis to isolate CD45RA- memory T cells.
- Culture and activation of CD45RA- cells using CliniMACS Prodigy system and T Cell TransAct.
- Transduction with a second-generation NKG2D CAR lentiviral vector (NKG2D-CD8TM-4-1BB-CD3ζ).
Main Results:
- Achieved large-scale production of viable NKG2D CAR memory T cells within 10-13 days.
- Demonstrated high levels of NKG2D CAR expression and potent cytotoxicity against tumor cell lines.
- Validated manufacturing process against regulatory specifications, with minor deviations in two batches.
Conclusions:
- The developed protocol enables feasible and reproducible manufacturing of clinical-grade NKG2D CAR memory T cells.
- This approach overcomes limitations of patient-derived CAR T cells and allogeneic T cell therapies.
- The scalable production expands the potential clinical utility of NKG2D CAR T cell therapy in cancer treatment.

