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Targeting CD33 in Chemoresistant AML Patient-Derived Xenografts by CAR-CIK Cells Modified with an Improved SB Transposon System

Authors :
Chiara F. Magnani
Marta Serafini
Maria Grazia Valsecchi
Tamás Raskó
Vincenzo Perriello
Ettore Biagi
Sarah Tettamanti
Gaia Alberti
Martino Introna
Zsuzsanna Izsvák
Maria Caterina Rotiroti
Felix Lundberg
Giuseppe Dastoli
Claudia Cappuzzello
Silvia Arcangeli
Chiara Buracchi
Amit Pande
Andrea Biondi
Stefania Galimberti
Rotiroti, M
Buracchi, C
Arcangeli, S
Galimberti, S
Valsecchi, M
Perriello, V
Rasko, T
Alberti, G
Magnani, C
Cappuzzello, C
Lundberg, F
Pande, A
Dastoli, G
Introna, M
Serafini, M
Biagi, E
Izsvák, Z
Biondi, A
Tettamanti, S
Source :
Mol Ther
Publication Year :
2020

Abstract

The successful implementation of chimeric antigen receptor (CAR)-T cell therapy in the clinical context of B cell malignancies has paved the way for further development in the more critical setting of acute myeloid leukemia (AML). Among the potentially targetable AML antigens, CD33 is insofar one of the main validated molecules. Here, we describe the feasibility of engineering cytokine-induced killer (CIK) cells with a CD33.CAR by using the latest optimized version of the non-viral Sleeping Beauty (SB) transposon system "SB100X-pT4." This offers the advantage of improving CAR expression on CIK cells, while reducing the amount of DNA transposase as compared to the previously employed "SB11-pT" version. SB-modified CD33.CAR-CIK cells exhibited significant antileukemic activity invitro and invivo in patient-derived AML xenograft models, reducing AML development when administered as an "early treatment" and delaying AML progression in mice with established disease. Notably, by exploiting an already optimized xenograft chemotherapy model that mimics human induction therapy in mice, we demonstrated for the first time that CD33.CAR-CIK cells are also effective toward chemotherapy resistant/residual AML cells, further supporting its future clinical development and implementation within the current standard regimens.

Details

Language :
English
Database :
OpenAIRE
Journal :
Mol Ther
Accession number :
edsair.doi.dedup.....35153ff5179c4306903743a815c275b4