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Manufacturing Chimeric Antigen Receptor CAR T Cells for Adoptive Immunotherapy
Published on: December 17, 2019
Preclinical Optimization of a CD20-specific Chimeric Antigen Receptor Vector and Culture Conditions
Sang Yun Lee1, Philip Olsen1, Dong Hoon Lee1
1Clinical Research Division, Fred Hutchinson Cancer Research Center.
Abstract:
Chimeric antigen receptor (CAR)-based adoptive T-cell therapy is a highly promising treatment for lymphoid malignancies, and CD20 is an ideal target antigen. We previously developed a lentiviral construct encoding a third generation CD20-targeted CAR but identified several features that required additional optimization before clinical translation. We describe here several improvements, including replacement of the immunogenic murine antigen-binding moiety with a fully human domain, streamlining the transgene insert to enhance lentiviral titers, modifications to the extracellular IgG spacer that abrogate nonspecific activation resulting from binding to Fc receptors, and evaluation of CD28, 4-1BB, or CD28 and 4-1BB costimulatory domains. We also found that restimulation of CAR T cells with an irradiated CD20 cell line boosted cell growth, increased the fraction of CAR-expressing cells, and preserved in vivo function despite leading to a reduced capacity for cytokine secretion in vitro. We also found that cryopreservation of CAR T cells did not affect immunophenotype or in vivo antitumor activity compared with fresh cells. These optimization steps resulted in significant improvement in antitumor activity in mouse models, resulting in eradication of established systemic lymphoma tumors in 75% of mice with a single infusion of CAR T cells, and prolonged in vivo persistence of modified cells. These results provide the basis for clinical testing of a lentiviral construct encoding a fully human CD20-targeted CAR with CD28 and 4-1BB costimulatory domains and truncated CD19 (tCD19) transduction marker.
Insights
Optimized chimeric antigen receptor (CAR) T-cell therapy targeting CD20 shows significant promise for lymphoid malignancies. Enhanced CAR T-cells demonstrated potent antitumor activity and prolonged persistence in preclinical models.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Chimeric antigen receptor (CAR)-based T-cell therapy is a promising strategy for lymphoid malignancies.
- CD20 is a validated target antigen for CAR T-cell therapy.
- Previous lentiviral CAR constructs required optimization for clinical translation.
Purpose of the Study:
- To optimize a third-generation CD20-targeted CAR lentiviral construct for enhanced clinical efficacy.
- To evaluate modifications including a fully human binding domain, streamlined transgene, and optimized costimulatory domains (CD28, 4-1BB).
Main Methods:
- Engineered lentiviral construct with a fully human CD20-targeting CAR.
- Incorporated CD28 and 4-1BB costimulatory domains.
- Assessed CAR T-cell function, including in vitro restimulation and cryopreservation effects, and in vivo antitumor activity in mouse models.
Main Results:
- Optimized CAR T-cells exhibited significantly improved antitumor activity in mouse models.
- Achieved eradication of established systemic lymphoma in 75% of mice with a single infusion.
- Demonstrated prolonged in vivo persistence of modified CAR T-cells.
Conclusions:
- The optimized, fully human CD20-targeted CAR T-cell construct with dual costimulatory domains is suitable for clinical testing.
- The modifications enhance efficacy and persistence, supporting its potential for treating lymphoid malignancies.

