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Updated: Jun 9, 2025

Production of Human CRISPR-Engineered CAR-T Cells
Published on: March 15, 2021
Breakthroughs in synthetic controlling strategies for precision in CAR-T therapy
Wang Tik Tang1, Ryohichi Sugimura2
1School of Biomedical Sciences, Li Ka Shing Faculty of Medicine, University of Hong Kong, Hong Kong SAR, China.
Abstract:
Chimeric antigen receptors (CAR) are synthetic receptors engineered to target a user-defined antigen. They comprise an extracellular single-chain variable fragment for target recognition and intracellular signalling domains commonly derived from immune cells. CAR-T cells have proven to be successful in therapy of some cancers. CAR-T cells are activated upon antigen-priming and subsequent intracellular signalling. However, tonic signalling in CAR-T cells remains a challenge in developing CAR-T therapeutics of high efficacy as it causes early T-cell exhaustion, limiting therapeutic persistence. Moreover, a poor choice of target antigen leads to off-target cytotoxicity, often hampering the host's survival. In addition, conventional methods of delivering CAR gene circuits utilise viral vectors, such as lentiviruses and retroviruses, which insert the CAR gene circuits into transcriptionally active sites in the genome. This increases the risks of malignant transformation due to improper genome integration. Optimisation in CAR-T engineering, from the architecture of CAR gene circuits to the structure of CAR and the behaviour of CAR-T cells, is paramount to ensure high efficacy, persistence, and precision in CAR-T therapy. This review provides insights into engineering CAR-T cells for precision in cancer therapy by highlighting the key strategies recently developed to optimise the function and efficiency of CARs. The delivery method of CAR gene circuits, circuit and structural modification of CAR, T-cell phenotype manipulation and T-cell arming will be discussed to accentuate their interplay in regulating CAR-T therapy's safety, precision, and efficacy.
Insights
Engineering chimeric antigen receptors (CARs) enhances CAR-T cell therapy for cancer. Strategies optimize CAR gene circuits, structure, and T-cell behavior for improved efficacy, persistence, and safety.
Area of Science:
- Immunology
- Biotechnology
- Oncology
Background:
- Chimeric antigen receptors (CARs) are engineered receptors for targeted cancer therapy.
- CAR-T cells show success but face challenges like T-cell exhaustion and off-target toxicity.
- Current viral vector delivery methods pose risks of malignant transformation.
Purpose of the Study:
- To review recent strategies for engineering CAR-T cells for precision cancer therapy.
- To highlight optimizations in CAR gene circuits, CAR structure, and T-cell behavior.
- To discuss the interplay of these factors in regulating CAR-T therapy safety, precision, and efficacy.
Main Methods:
- Review of recent literature on CAR-T cell engineering strategies.
- Analysis of methods for optimizing CAR gene circuits and CAR structure.
- Discussion of T-cell phenotype manipulation and T-cell arming techniques.
Main Results:
- Engineering CARs can overcome tonic signaling and T-cell exhaustion.
- Precise target antigen selection and optimized CAR design reduce off-target effects.
- Non-viral or safer integration methods are being explored to mitigate genotoxicity risks.
Conclusions:
- Optimized CAR gene circuits, CAR structure, and T-cell behavior are crucial for effective CAR-T therapy.
- Interplay between engineering strategies enhances safety, precision, and efficacy.
- Continued advancements in CAR-T cell engineering promise improved cancer treatment outcomes.
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