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Updated: Jun 17, 2025

A Real-time Potency Assay for Chimeric Antigen Receptor T Cells Targeting Solid and Hematological Cancer Cells
Published on: November 12, 2019
Fast on-rates of chimeric antigen receptors enhance the sensitivity to peptide MHC via antigen rebinding
Hiroyuki Hiratsuka1, Yasushi Akahori1, Shingo Maeta2
1Department of Personalized Cancer Immunotherapy, Graduate School of Medicine, Mie University, Tsu, Mie, Japan.
Abstract:
Chimeric antigen receptor (CAR) is a synthetic receptor that induces T cell-mediated lysis of abnormal cells. As cancer driver proteins are present at low levels on the cell surface, they can cause weak CAR reactivity, resulting in antigen sensitivity defects and consequently limited therapeutic efficacy. Although affinity maturation enhances the efficacy of CAR-T cell therapy, it causes off-target cross-reactions resulting in adverse effects. Preferentially expressed antigen in melanoma (PRAME) is an intracellular oncoprotein that is overexpressed in various tumors and restricted in normal tissues, except the testis. Therefore, PRAME could be an ideal target for cancer immunotherapy. In this study, we developed an experimental CAR system comprising six single-chain variable fragments that specifically recognizes the PRAMEp301/HLA-A∗24:02 complex. Cell-mediated cytotoxicity was demonstrated using a panel of CARs with a wide range of affinities (KD = 10-10-10-7 M) and affinity modulation. CAR-T cells with fast on-rates enhance antigen sensitivity by accelerating the killing rates of these cells. Alanine scanning data demonstrated the potential of genetically engineered CARs to reduce the risk of cross-reactivity, even among CARs with high affinities. Given the correlation between on-rates and dwell time that occurs in rebinding and cell-mediated cytotoxicity, it is proposed that CAR-binding characteristics, including on-rate, play a pivotal role in the lytic capacity of peptide-major histocompatibility complex-targeting CAR-T cells, thus facilitating the development of strategies whereby genetically engineered CARs target intracellular antigens in cancer cells to lyse the cells.
Insights
Researchers engineered chimeric antigen receptor (CAR)-T cells targeting the PRAME oncoprotein. Fast on-rates improved cancer cell killing and reduced off-target effects, enhancing CAR-T cell therapy potential.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Chimeric antigen receptor (CAR) T-cell therapy shows promise for cancer treatment but faces challenges with low-affinity targets and off-target effects.
- Intracellular oncoproteins like PRAME are ideal cancer immunotherapy targets due to their overexpression in tumors and restricted expression in normal tissues.
Purpose of the Study:
- To develop and characterize a novel CAR system targeting the PRAME oncoprotein in complex with HLA-A*24:02.
- To investigate the impact of CAR affinity and on-rates on T-cell mediated cytotoxicity and antigen sensitivity.
Main Methods:
- Engineered a CAR system with six single-chain variable fragments targeting PRAME.
- Assessed CAR-T cell-mediated cytotoxicity across a range of affinities (10^-10 to 10^-7 M) and affinity modulation.
- Utilized alanine scanning to evaluate potential for reducing cross-reactivity.
Main Results:
- The developed CAR system specifically recognized the PRAME/HLA-A*24:02 complex.
- CAR-T cells with fast on-rates demonstrated enhanced antigen sensitivity and accelerated killing rates.
- Genetically engineered CARs showed potential in reducing off-target cross-reactivity, even at high affinities.
Conclusions:
- CAR-binding characteristics, particularly on-rates, are crucial for the lytic capacity of peptide-MHC-targeting CAR-T cells.
- This study facilitates the development of strategies for genetically engineered CARs to target intracellular antigens in cancer therapy.

