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CARPOOL: A library-based platform to rapidly identify next generation chimeric antigen receptors

Authors :
Yunpeng Liu
Gordon Ks
Douglas A. Lauffenburger
Perez Cr
Michael T. Hemann
Darrell J. Irvine
Michael E. Birnbaum
Ramos A
Taeyoon Kyung
Patrick V. Holec
Brian A. Joughin
Annie Zhang
Christof Koch
Alina Starchenko
Publication Year :
2021
Publisher :
Cold Spring Harbor Laboratory, 2021.

Abstract

CD19-targeted CAR therapies have successfully treated B cell leukemias and lymphomas, but many responders later relapse or experience toxicities. CAR intracellular domains (ICDs) are key to converting antigen recognition into anti-tumor effector functions. Despite the many possible immune signaling domain combinations that could be included in CARs, almost all CARs currently rely upon CD3ΞΆ, CD28, and/or 4-1BB signaling. To explore the signaling potential of CAR ICDs, we generated a library of 700,000 CD19 CAR molecules with diverse signaling domains and developed a high throughput screening platform to enable optimization of CAR signaling for anti-tumor functions. Our strategy identifies CARs with novel signaling domain combinations that elicit distinct T cell behaviors from a clinically available CAR, including enhanced proliferation and persistence, lower exhaustion, potent cytotoxicity in anin vitrotumor rechallenge condition, and comparable tumor controlin vivo. This approach is readily adaptable to numerous disease models, cell types, and selection conditions, making it a promising tool for rapidly improving adoptive cell therapies and expanding their utility to new disease indications.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........ab56f350e37f3babf9a2fd5c153150f4