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.

Frontiers in Immunology
|October 26, 2019
PubMed

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.

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