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1.
J Immunother ; 43(4): 107-120, 2020 05.
Article in English | MEDLINE | ID: mdl-31899702

ABSTRACT

Chimeric antigen receptor (CAR) T-cell therapy is a promising treatment for patients with CD19 B-cell malignancies. Combination strategies that improve CAR T-cell potency, limit tumor environment-mediated immune dysfunction, and directly reduce tumor burden may increase the potential for durable clinical benefit of CAR T-cell therapy. Lisocabtagene maraleucel (liso-cel) is a product therapy candidate being tested in patients with relapsed/refractory non-Hodgkin lymphoma or chronic lymphocytic leukemia. This study assessed the in vitro and in vivo functionality of CAR T cells transduced to express the anti-CD19 CAR of liso-cel in combination with ibrutinib or acalabrutinib. In prolonged stimulation assays, the presence of ibrutinib or acalabrutinib improved the CAR T-cell effector function. RNA-Seq analysis and surface marker profiling of these CAR T cells treated with ibrutinib but not acalabrutinib revealed gene expression changes consistent with skewing toward a memory-like, type 1 T-helper, Bruton tyrosine kinase phenotype. Ibrutinib or acalabrutinib improved CD19 tumor clearance and prolonged survival of tumor-bearing mice when used in combination with CAR T cells. A combination of the defined cell product therapy candidate, liso-cel, with ibrutinib or acalabrutinib is an attractive approach that may potentiate the promising clinical responses already achieved in CD19 B-cell malignancies with each of these single agents.


Subject(s)
Antigens, CD19/immunology , Antineoplastic Combined Chemotherapy Protocols/therapeutic use , Immunotherapy, Adoptive , Neoplasms/therapy , Receptors, Antigen, T-Cell/immunology , Receptors, Chimeric Antigen/immunology , Adenine/administration & dosage , Adenine/analogs & derivatives , Animals , Antineoplastic Combined Chemotherapy Protocols/adverse effects , Benzamides/administration & dosage , Biomarkers , Combined Modality Therapy , Cytokines/metabolism , Cytotoxicity, Immunologic , Disease Models, Animal , Humans , Immunotherapy, Adoptive/methods , Lymphocyte Activation/immunology , Mice , Neoplasms/etiology , Neoplasms/metabolism , Piperidines/administration & dosage , Pyrazines/administration & dosage , Receptors, Chimeric Antigen/metabolism , T-Lymphocytes/immunology , T-Lymphocytes/metabolism , Treatment Outcome , Xenograft Model Antitumor Assays
2.
Mol Cancer Ther ; 18(12): 2246-2257, 2019 12.
Article in English | MEDLINE | ID: mdl-31395689

ABSTRACT

Anti-B-cell maturation antigen (BCMA) chimeric antigen receptor (CAR) T cells have shown promising clinical responses in patients with relapsed/refractory multiple myeloma. Lenalidomide, an immunomodulatory drug, potentiates T cell functionality, drives antimyeloma activity, and alters the suppressive microenvironment; these properties may effectively combine with anti-BCMA CAR T cells to enhance function. Using an anti-BCMA CAR T, we demonstrated that lenalidomide enhances CAR T cell function in a concentration-dependent manner. Lenalidomide increased CAR T effector cytokine production, particularly under low CAR stimulation or in the presence of inhibitory ligand programmed cell death 1 ligand 1. Notably, lenalidomide also enhanced CAR T cytokine production, cytolytic activity, and activation profile relative to untreated CAR T cells in chronic stimulation assays. This unique potentiation of both short-term CAR T activity and long-term functionality during chronic stimulation prompted investigation of the molecular profile of lenalidomide-treated CAR T cells. Signatures from RNA sequencing and assay for transposase-accessible chromatin using sequencing indicated that pathways associated with T-helper 1 response, cytokine production, T cell activation, cell-cycle control, and cytoskeletal remodeling were altered with lenalidomide. Finally, study of lenalidomide and anti-BCMA CAR T cells in a murine, disseminated, multiple myeloma model indicated that lenalidomide increased CAR T cell counts in blood and significantly prolonged animal survival. In summary, preclinical studies demonstrated that lenalidomide potentiated CAR T activity in vivo in low-antigen or suppressive environments and delayed onset of functional exhaustion. These results support further investigation of lenalidomide and anti-BCMA CAR T cells in the clinic.


Subject(s)
Angiogenesis Inhibitors/therapeutic use , Lenalidomide/therapeutic use , Multiple Myeloma/drug therapy , Receptors, Chimeric Antigen/metabolism , Angiogenesis Inhibitors/pharmacology , Animals , Cell Line, Tumor , Disease Models, Animal , Humans , Lenalidomide/pharmacology , Mice , Multiple Myeloma/pathology
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