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Drug-regulated CD33-targeted CAR T cells control AML using clinically optimized rapamycin dosing.


ABSTRACT: Chimeric antigen receptor (CAR) designs that incorporate pharmacologic control are desirable; however, designs suitable for clinical translation are needed. We designed a fully human, rapamycin-regulated drug product for targeting CD33+ tumors called dimerizaing agent-regulated immunoreceptor complex (DARIC33). T cell products demonstrated target-specific and rapamycin-dependent cytokine release, transcriptional responses, cytotoxicity, and in vivo antileukemic activity in the presence of as little as 1 nM rapamycin. Rapamycin withdrawal paused DARIC33-stimulated T cell effector functions, which were restored following reexposure to rapamycin, demonstrating reversible effector function control. While rapamycin-regulated DARIC33 T cells were highly sensitive to target antigen, CD34+ stem cell colony-forming capacity was not impacted. We benchmarked DARIC33 potency relative to CD19 CAR T cells to estimate a T cell dose for clinical testing. In addition, we integrated in vitro and preclinical in vivo drug concentration thresholds for off-on state transitions, as well as murine and human rapamycin pharmacokinetics, to estimate a clinically applicable rapamycin dosing schedule. A phase I DARIC33 trial has been initiated (PLAT-08, NCT05105152), with initial evidence of rapamycin-regulated T cell activation and antitumor impact. Our findings provide evidence that the DARIC platform exhibits sensitive regulation and potency needed for clinical application to other important immunotherapy targets.

SUBMITTER: Appelbaum J 

PROVIDER: S-EPMC11060733 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Drug-regulated CD33-targeted CAR T cells control AML using clinically optimized rapamycin dosing.

Appelbaum Jacob J   Price April E AE   Oda Kaori K   Zhang Joy J   Leung Wai-Hang WH   Tampella Giacomo G   Xia Dong D   So Pauline Pl PP   Hilton Sarah K SK   Evandy Claudya C   Sarkar Semanti S   Martin Unja U   Krostag Anne-Rachel AR   Leonardi Marissa M   Zak Daniel E DE   Logan Rachael R   Lewis Paula P   Franke-Welch Secil S   Ngwenyama Njabulo N   Fitzgerald Michael M   Tulberg Niklas N   Rawlings-Rhea Stephanie S   Gardner Rebecca A RA   Jones Kyle K   Sanabria Angelica A   Crago William W   Timmer John J   Hollands Andrew A   Eckelman Brendan B   Bilic Sanela S   Woodworth Jim J   Lamble Adam A   Gregory Philip D PD   Jarjour Jordan J   Pogson Mark M   Gustafson Joshua A JA   Astrakhan Alexander A   Jensen Michael C MC  

The Journal of clinical investigation 20240319 9


Chimeric antigen receptor (CAR) designs that incorporate pharmacologic control are desirable; however, designs suitable for clinical translation are needed. We designed a fully human, rapamycin-regulated drug product for targeting CD33+ tumors called dimerizaing agent-regulated immunoreceptor complex (DARIC33). T cell products demonstrated target-specific and rapamycin-dependent cytokine release, transcriptional responses, cytotoxicity, and in vivo antileukemic activity in the presence of as lit  ...[more]

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