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Engineering amino acid uptake or catabolism promotes CAR T-cell adaption to the tumor environment

Authors :
Silvia Panetti
Nicola McJannett
Livingstone Fultang
Sarah Booth
Luciana Gneo
Ugo Scarpa
Charles Smith
Ashley Vardon
Lisa Vettore
Celina Whalley
Yi Pan
Csilla Várnai
Hitoshi Endou
Jonathan Barlow
Daniel Tennant
Andrew Beggs
Francis Mussai
Carmela De Santo
Source :
Blood Advances. 7:1754-1761
Publication Year :
2023
Publisher :
American Society of Hematology, 2023.

Abstract

Cancer cells take up amino acids from the extracellular space to drive cell proliferation and viability. Similar mechanisms are applied by immune cells, resulting in the competition between conventional T cells, or indeed chimeric antigen receptor (CAR) T cells and tumor cells, for the limited availability of amino acids within the environment. We demonstrate that T cells can be re-engineered to express SLC7A5 or SLC7A11 transmembrane amino acid transporters alongside CARs. Transporter modifications increase CAR T-cell proliferation under low tryptophan or cystine conditions with no loss of CAR cytotoxicity or increased exhaustion. Transcriptomic and phenotypic analysis reveals that downstream, SLC7A5/SLC7A11–modified CAR T cells upregulate intracellular arginase expression and activity. In turn, we engineer and phenotype a further generation of CAR T cells that express functional arginase 1/arginase 2 enzymes and have enhanced CAR T-cell proliferation and antitumor activity. Thus, CAR T cells can be adapted to the amino acid metabolic microenvironment of cancer, a hitherto recognized but unaddressed barrier for successful CAR T-cell therapy.

Subjects

Subjects :
Hematology

Details

ISSN :
24739537 and 24739529
Volume :
7
Database :
OpenAIRE
Journal :
Blood Advances
Accession number :
edsair.doi.dedup.....8489c37ab725f064e6a73f4a32e70bc8
Full Text :
https://doi.org/10.1182/bloodadvances.2022008272