Related Experiment Video
Updated: Jan 22, 2026

Generation of Human Chimeric Antigen Receptor Regulatory T Cells
Published on: January 3, 2025
Modulation of chimeric antigen receptor surface expression by a small molecule switch
Alexandre Juillerat1, Diane Tkach2, Brian W Busser2
1Cellectis Inc, 430E, 29th street, New York, NY, 10016, USA. ajuillerat@cellectis.com.
Background:
Engineered therapeutic cells have attracted a great deal of interest due to their potential applications in treating a wide range of diseases, including cancer and autoimmunity. Chimeric antigen receptor (CAR) T-cells are designed to detect and kill tumor cells that present a specific, predefined antigen. The rapid expansion of targeted antigen beyond CD19, has highlighted new challenges, such as autoactivation and T-cell fratricide, that could impact the capacity to manufacture engineered CAR T-cells. Therefore, the development of strategies to control CAR expression at the surface of T-cells and their functions is under intense investigations.
Results:
Here, we report the development and evaluation of an off-switch directly embedded within a CAR construct (SWIFF-CAR). The incorporation of a self-cleaving degradation moiety controlled by a protease/protease inhibitor pair allowed the ex vivo tight and reversible control of the CAR surface presentation and the subsequent CAR-induced signaling and cytolytic functions of the engineered T-cells using the cell permeable Asunaprevir (ASN) small molecule.
Conclusions:
The strategy described in this study could, in principle, be broadly adapted to CAR T-cells development to circumvent some of the possible hurdle of CAR T-cell manufacturing. This system essentially creates a CAR T-cell with an integrated functional rheostat.
Insights
Researchers developed a novel "off-switch" for engineered Chimeric Antigen Receptor (CAR) T-cells. This system allows precise control over CAR T-cell manufacturing and function, addressing challenges in cancer and autoimmune disease therapies.
Area of Science:
- Immunology
- Biotechnology
- Cell Therapy
Background:
- Engineered therapeutic cells, including Chimeric Antigen Receptor (CAR) T-cells, show promise for treating cancer and autoimmune diseases.
- Expanding CAR T-cell targets beyond CD19 presents manufacturing challenges like autoactivation and T-cell fratricide.
- Controlling CAR expression and T-cell function is crucial for effective therapeutic development.
Purpose of the Study:
- To develop and evaluate an integrated
- off-switch
Main Methods:
- Engineered a novel CAR construct (SWIFF-CAR) with a self-cleaving degradation moiety.
- Utilized a protease/protease inhibitor pair to control CAR expression.
- Employed the small molecule Asunaprevir (ASN) for reversible control.
Main Results:
- Demonstrated tight and reversible ex vivo control of CAR surface presentation.
- Showcased control over CAR-induced signaling and cytolytic functions.
- Successfully regulated engineered T-cell activity using a small molecule inhibitor.
Conclusions:
- The SWIFF-CAR strategy offers a broadly adaptable method for CAR T-cell development.
- This system helps overcome hurdles in CAR T-cell manufacturing.
- The developed system functions as an integrated rheostat for CAR T-cells.
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