Killing Mechanisms of Chimeric Antigen Receptor (CAR) T Cells

Механизмы уничтожения химерными Т-клетками с антигенным рецептором (CAR)
Sebastian Kobold, Stefan Endres, Stefanie Lesch, Mohamed-Reda Benmebarek, Clara H. Karches, Bruno L. Cadilha
2019-03-14

CAR T cell therapyFas-Fas ligand axisMHC-unrestricted tumor killingimmune synapseperforin-granzyme axis
Effective adoptive T cell therapy (ACT) comprises the killing of cancer cells through the therapeutic use of transferred T cells. One of the main ACT approaches is chimeric antigen receptor (CAR) T cell therapy. CAR T cells mediate MHC-unrestricted tumor cell killing by enabling T cells to bind target cell surface antigens through a single-chain variable fragment (scFv) recognition domain. Upon engagement, CAR T cells form a non-classical immune synapse (IS), required for their effector function. These cells then mediate their anti-tumoral effects through the perforin and granzyme axis, the Fas and Fas ligand axis, as well as the release of cytokines to sensitize the tumor stroma. Their persistence in the host and functional outputs are tightly dependent on the receptor's individual components-scFv, spacer domain, and costimulatory domains-and how said component functions converge to augment CAR T cell performance. In this review, we bring forth the successes and limitations of CAR T cell therapy. We delve further into the current understanding of how CAR T cells are designed to function, survive, and ultimately mediate their anti-tumoral effects.
1
Antigen engagement induces a non-classical immune synapse that is required for CAR T-cell effector function.
2
CAR T cells enable MHC-unrestricted tumor killing by recognizing surface antigens through a single-chain variable fragment domain.
3
CAR T-cell cytotoxicity involves the perforin–granzyme pathway, Fas–Fas ligand signaling, and cytokine release that sensitizes the tumor stroma.
4
CAR T-cell persistence and functional performance depend on the combined effects of the scFv, spacer, and costimulatory receptor domains.
5
The review examines both the therapeutic successes and limitations of CAR T-cell therapy, including mechanisms governing their function, survival, and antitumor activity.

CAR T cells and their interactions with tumor cells

The mechanisms and determinants of CAR T-cell anti-tumor killing, including immune-synapse formation, cytotoxic effector pathways, cytokine release, persistence, and receptor-component-dependent performance

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2019-03-14
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Sebastian Kobold
Stefan Endres
Stefanie Lesch
Mohamed-Reda Benmebarek
Clara H. Karches
Bruno L. Cadilha
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