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  3. CD70 CAR T cells secreting an anti-CD33/anti-CD3 dual-targeting antibody overcome antigen heterogeneity in AML.
 

CD70 CAR T cells secreting an anti-CD33/anti-CD3 dual-targeting antibody overcome antigen heterogeneity in AML.

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BORIS DOI
10.48620/97582
Publisher DOI
10.1182/blood.2023023210
PubMed ID
39571145
Description
CD70 has emerged as a promising target in acute myeloid leukemia (AML), and we have previously demonstrated the potency of an optimized CD70-targeted ligand-based chimeric antigen receptor (CAR). However, here, we identify in vivo CD70 antigen escape as a limitation of single-antigen targeting. Combination targeting of CD70 and CD33 may overcome AML antigen heterogeneity. We hypothesized that modifying our CD70 CAR platform to secrete a bispecific T-cell engaging antibody molecule (TEAM) targeting CD33 (7033) would create a therapeutic window whereby AML heterogeneity could be addressed without increasing tissue toxicity. We found that CD33 TEAMs mediated specific cytotoxicity across AML cell lines, including CD33 or CD70 single-antigen knockout tumors. 7033 CAR T cells eradicated tumor in an in vivo mixed tumor model of CD70 antigen escape and outperformed the previously optimized CD70 CAR in a patient-derived xenograft. In vivo gene expression profiling of CAR T cells revealed enhanced 7033 CAR T-cell pathway scoring for persistence, activation, and T-cell receptor signaling. Additionally, CD33 TEAMs successfully redirected T cells isolated from patients with AML to activate, secrete cytokines, and kill tumor targets despite exposure to substantial prior cytotoxic therapies. In summary, our findings demonstrate the feasibility of our 7033 CAR to overcome AML heterogeneity and leverage the bystander T cells of patients; this approach warrants further study in patients with this dire clinical need.
Date of Publication
2025
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Language(s)
en
Contributor(s)
Silva, Harrison J
Martin, Grace
Birocchi, Filippo
Wehrli, Marc
Kann, Michael C
Supper, Valentina
Parker, Aiyana
Graham, Charlotte
Bratt, Alexandra
Bouffard, Amanda
Donner, Hannah
Escobar, Giulia
Takei, Hana
Armstrong, Alexander
Goncalves, Sadie
Berger, Trisha R
Choi, Bryan D
Maus, Marcela V
Leick, Mark B
Additional Credits
Clinic of Medical Oncology
Series
Blood
Publisher
American Society of Hematology (ASH Publications)
ISSN
1528-0020
0006-4971
Access(Rights)
restricted
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