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1.
Cancer Immunol Immunother ; 72(10): 3323-3335, 2023 Oct.
Article in English | MEDLINE | ID: mdl-37477653

ABSTRACT

Allogeneic natural killer (NK) cell-based immunotherapy is a promising, well-tolerated adjuvant therapeutic approach for acute myeloid leukemia (AML). For reproducible NK cell immunotherapy, a homogenous, pure and scalable NK cell product is preferred. Therefore, we developed a good manufacturing practice (GMP)-compliant, cytokine-based ex vivo manufacturing process for generating NK cells from CD34+ hematopoietic stem and progenitor cells (HSPC). This manufacturing process combines amongst others IL15 and IL12 and the aryl hydrocarbon receptor antagonist StemRegenin-1 (SR1) to generate a consistent and active NK cell product that fits the requirements for NK cell immunotherapy well. The cell culture protocol was first optimized to generate NK cells with required expansion and differentiation capacity in GMP-compliant closed system cell culture bags. In addition, phenotype, antitumor potency, proliferative and metabolic capacity were evaluated to characterize the HSPC-NK product. Subsequently, seven batches were manufactured for qualification of the process. All seven runs demonstrated consistent results for proliferation, differentiation and antitumor potency, and preliminary specifications for the investigational medicinal product for early clinical phase trials were set. This GMP-compliant manufacturing process for HSPC-NK cells (named RNK001 cells) is used to produce NK cell batches applied in the clinical trial 'Infusion of ex vivo-generated allogeneic natural killer cells in combination with subcutaneous IL2 in patients with acute myeloid leukemia' approved by the Dutch Ethics Committee (EudraCT 2019-001929-27).


Subject(s)
Immunotherapy, Adoptive , Leukemia, Myeloid, Acute , Humans , Immunotherapy, Adoptive/methods , Killer Cells, Natural/metabolism , Leukemia, Myeloid, Acute/genetics , Antigens, CD34/metabolism , Hematopoietic Stem Cells
3.
Cancer Immunol Immunother ; 70(5): 1305-1321, 2021 May.
Article in English | MEDLINE | ID: mdl-33140189

ABSTRACT

Allogeneic natural killer (NK) cell transfer is a potential immunotherapy to eliminate and control cancer. A promising source are CD34 + hematopoietic progenitor cells (HPCs), since large numbers of cytotoxic NK cells can be generated. Effective boosting of NK cell function can be achieved by interleukin (IL)-15. However, its in vivo half-life is short and potent trans-presentation by IL-15 receptor α (IL-15Rα) is absent. Therefore, ImmunityBio developed IL-15 superagonist N-803, which combines IL-15 with an activating mutation, an IL-15Rα sushi domain for trans-presentation, and IgG1-Fc for increased half-life. Here, we investigated whether and how N-803 improves HPC-NK cell functionality in leukemia and ovarian cancer (OC) models in vitro and in vivo in OC-bearing immunodeficient mice. We used flow cytometry-based assays, enzyme-linked immunosorbent assay, microscopy-based serial killing assays, and bioluminescence imaging, for in vitro and in vivo experiments. N-803 increased HPC-NK cell proliferation and interferon (IFN)γ production. On leukemia cells, co-culture with HPC-NK cells and N-803 increased ICAM-1 expression. Furthermore, N-803 improved HPC-NK cell-mediated (serial) leukemia killing. Treating OC spheroids with HPC-NK cells and N-803 increased IFNγ-induced CXCL10 secretion, and target killing after prolonged exposure. In immunodeficient mice bearing human OC, N-803 supported HPC-NK cell persistence in combination with total human immunoglobulins to prevent Fc-mediated HPC-NK cell depletion. Moreover, this combination treatment decreased tumor growth. In conclusion,  N-803 is a promising IL-15-based compound that boosts HPC-NK cell expansion and functionality in vitro and in vivo. Adding N-803 to HPC-NK cell therapy could improve cancer immunotherapy.


Subject(s)
Antineoplastic Agents/therapeutic use , Interleukin-15/agonists , Killer Cells, Natural/immunology , Leukemia/therapy , Lymphoid Progenitor Cells/immunology , Ovarian Neoplasms/therapy , Recombinant Fusion Proteins/therapeutic use , Animals , Antigens, CD34/metabolism , Antineoplastic Agents/pharmacology , Cell Differentiation , Cell Line, Tumor , Cytotoxicity Tests, Immunologic , Disease Models, Animal , Female , Humans , Interferon-gamma/metabolism , Killer Cells, Natural/transplantation , Leukemia/immunology , Lymphoid Progenitor Cells/transplantation , Mice , Mice, SCID , Ovarian Neoplasms/immunology , Recombinant Fusion Proteins/pharmacology
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