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Updated: Nov 19, 2025

Manufacturing Chimeric Antigen Receptor CAR T Cells for Adoptive Immunotherapy
Published on: December 17, 2019
Targeted multi-epitope switching enables straightforward positive/negative selection of CAR T cells
Laura Mosti1,2,3, Lukas M Langner1,2,4, Kay O Chmielewski1,2,3
1Institute for Transfusion Medicine and Gene Therapy, Medical Center-University of Freiburg, Freiburg, Germany.
Abstract:
Chimeric antigen receptor (CAR) T cell technology has enabled successfully novel concepts to treat cancer patients, with substantial remission rates in lymphoid malignancies. This cell therapy is based on autologous T lymphocytes that are genetically modified to express a CAR that recognizes tumor-associated antigens and mediates the elimination of the respective tumor cells. Current limitations include laborious manufacturing procedures as well as severe immunological side effects upon administration of CAR T cells. To address these limitations, we integrated RQR8, a multi-epitope molecule harboring a CD34 epitope and two CD20 mimotopes, alongside a CD19-targeting CAR, into the CD52 locus. Using CRISPR-Cas9 and adeno-associated virus-based donor vectors, some 60% of genome-edited T cells were CAR+/CD20+/CD34+/CD52- without further selection. This could be increased to >95% purity after CD34 tag-based positive selection. These epitope-switched CAR T cells retained cell killing competence against CD19+ tumor cells, and were resistant to alemtuzumab (anti-CD52) but sensitive to rituximab (anti-CD20) in complement-dependent cytotoxicity assays. In conclusion, gene editing-based multiple epitope switching represents a promising development with the potential to improve both the manufacturing procedure as well as the clinical safety of CAR T cells.
Insights
Gene editing advances CAR T-cell therapy by modifying T cells to express a chimeric antigen receptor (CAR) and multiple epitopes. This approach enhances manufacturing and reduces side effects for cancer treatment.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Chimeric antigen receptor (CAR) T-cell therapy shows promise in treating lymphoid malignancies.
- Current CAR T-cell therapies face challenges in manufacturing and potential immunological side effects.
Purpose of the Study:
- To develop an improved CAR T-cell therapy by integrating epitope switching into the manufacturing process.
- To enhance the safety and efficiency of CAR T-cell production.
Main Methods:
- Utilized CRISPR-Cas9 and adeno-associated virus vectors to genetically modify T cells.
- Integrated a CD19-targeting CAR with the RQR8 multi-epitope molecule into the CD52 locus.
- Employed CD34 tag-based positive selection for high-purity CAR T cells.
Main Results:
- Achieved approximately 60% genome-edited T cells expressing CAR and multiple epitopes without selection.
- Reached >95% purity of epitope-switched CAR T cells after CD34 selection.
- Demonstrated retained tumor cell killing competence and differential sensitivity to antibodies.
Conclusions:
- Gene editing-based multiple epitope switching offers a promising strategy to improve CAR T-cell manufacturing.
- This novel approach has the potential to enhance the clinical safety profile of CAR T-cell therapies.
- Epitope-switched CAR T cells maintain efficacy while offering improved control over immune responses.
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