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Sensitive and adaptable pharmacological control of CAR T cells through extracellular receptor dimerization
Wai-Hang Leung, Joel Gay, Unja Martin, Tracy E. Garrett, Holly M. Horton, Michael T. Certo, Bruce R. Blazar, Richard A. Morgan, Philip D. Gregory, Jordan Jarjour, Alexander Astrakhan
Wai-Hang Leung, Joel Gay, Unja Martin, Tracy E. Garrett, Holly M. Horton, Michael T. Certo, Bruce R. Blazar, Richard A. Morgan, Philip D. Gregory, Jordan Jarjour, Alexander Astrakhan
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Research Article Oncology Therapeutics

Sensitive and adaptable pharmacological control of CAR T cells through extracellular receptor dimerization

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Abstract

Chimeric antigen receptor (CAR) T cell therapies have achieved promising outcomes in several cancers; however, more challenging oncology indications may necessitate advanced antigen receptor designs and functions. Here we describe a bipartite receptor system composed of separate antigen-targeting and signal transduction polypeptides, each containing an extracellular dimerization domain. We demonstrate that T cell activation remains antigen dependent but can only be achieved in the presence of a dimerizing drug, rapamycin. Studies performed in vitro and in xenograft mouse models illustrate equivalent to superior antitumor potency compared with currently used CAR designs, and at rapamycin concentrations well below immunosuppressive levels. We further show that the extracellular positioning of the dimerization domains enables the administration of recombinant retargeting modules, potentially extending antigen targeting. Overall, this regulatable CAR design has exquisite drug sensitivity, provides robust antitumor responses, and is flexible for multiplex antigen targeting or retargeting, which may further assist the development of safe, potent, and durable T cell therapeutics.

Authors

Wai-Hang Leung, Joel Gay, Unja Martin, Tracy E. Garrett, Holly M. Horton, Michael T. Certo, Bruce R. Blazar, Richard A. Morgan, Philip D. Gregory, Jordan Jarjour, Alexander Astrakhan

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Figure 3

CD19-DARIC T cells are potent even at low rapamycin concentrations and low antigen expression.

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CD19-DARIC T cells are potent even at low rapamycin concentrations and l...
(A) CD19-DARIC or CD19-CAR T cells were cultured with Nalm-6 cells for 24 hours in the presence of different concentrations of rapamycin. Cytokine production was analyzed using iQue QBeads. Data points represent 3 donors. (B) K562 cells were transfected with in vitro–transcribed mRNA encoding the CD19 antigen. The transfected cells were cultured for 24 hours and CD19 expression was analyzed by flow cytometry. The amount of CD19 mRNA for each transfection is shown on the left, and the CD19 MFI value is listed on the right. (C) CD19-transfected K562 cells were cultured with CD19-DARIC (red) or CD19-CAR (black) T cells in the presence of 20 nM AP21967. After a 24-hour incubation period, supernatant was collected for cytokine analysis and cells were cultured for an additional 72 hours (4 days total coculture). At the conclusion of the coculture period, the number of T cells in each well was counted. The dashed lines represent samples cultured without AP21967, while solid lines represent samples cultured in the presence of 20 nM AP21967. The gray line indicates untransduced control. (D) Cytokine production in 24-hour supernatants from C was analyzed using iQue QBeads. Data points represent 3 unique donors. *P < 0.05; **P < 0.01 as determined by a 2-tailed, unpaired Student’s t test comparing AP21967-treated CD19-DARIC T cells versus AP21967-treated CD19-CAR samples.

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