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Tuning CARs: recent advances in modulating chimeric antigen receptor (CAR) T cell activity for improved safety, efficacy, and flexibility

Piotr Celichowski, Marcello Turi, Sandra Charvátová, Dhwani Radhakrishnan, Neda Feizi, Zuzana Chyra, Michal Šimíček, Tomáš Jelı́nek, Juli R. Bagó, Roman Hájek, Matouš Hrdinka

2023Journal of Translational Medicine44 citationsDOIOpen Access PDF

Abstract

Cancer immunotherapies utilizing genetically engineered T cells have emerged as powerful personalized therapeutic agents showing dramatic preclinical and clinical results, particularly in hematological malignancies. Ectopically expressed chimeric antigen receptors (CARs) reprogram immune cells to target and eliminate cancer. However, CAR T cell therapy's success depends on the balance between effective anti-tumor activity and minimizing harmful side effects. To improve CAR T cell therapy outcomes and mitigate associated toxicities, scientists from different fields are cooperating in developing next-generation products using the latest molecular cell biology and synthetic biology tools and technologies. The immunotherapy field is rapidly evolving, with new approaches and strategies being reported at a fast pace. This comprehensive literature review aims to provide an up-to-date overview of the latest developments in controlling CAR T cell activity for improved safety, efficacy, and flexibility.

Topics & Concepts

Chimeric antigen receptorImmunotherapyFlexibility (engineering)Cancer immunotherapyCell therapyComputational biologyMedicineT cellImmune systemBioinformaticsCancer researchCellImmunologyBiologyStatisticsGeneticsMathematicsCAR-T cell therapy researchAdvancements in Semiconductor Devices and Circuit DesignNanowire Synthesis and Applications
Tuning CARs: recent advances in modulating chimeric antigen receptor (CAR) T cell activity for improved safety, efficacy, and flexibility | Litcius