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Non-viral precision T cell receptor replacement for personalized cell therapy.

Authors :
Foy SP
Jacoby K
Bota DA
Hunter T
Pan Z
Stawiski E
Ma Y
Lu W
Peng S
Wang CL
Yuen B
Dalmas O
Heeringa K
Sennino B
Conroy A
Bethune MT
Mende I
White W
Kukreja M
Gunturu S
Humphrey E
Hussaini A
An D
Litterman AJ
Quach BB
Ng AHC
Lu Y
Smith C
Campbell KM
Anaya D
Skrdlant L
Huang EY
Mendoza V
Mathur J
Dengler L
Purandare B
Moot R
Yi MC
Funke R
Sibley A
Stallings-Schmitt T
Oh DY
Chmielowski B
Abedi M
Yuan Y
Sosman JA
Lee SM
Schoenfeld AJ
Baltimore D
Heath JR
Franzusoff A
Ribas A
Rao AV
Mandl SJ
Source :
Nature [Nature] 2023 Mar; Vol. 615 (7953), pp. 687-696. Date of Electronic Publication: 2022 Nov 10.
Publication Year :
2023

Abstract

T cell receptors (TCRs) enable T cells to specifically recognize mutations in cancer cells <superscript>1-3</superscript> . Here we developed a clinical-grade approach based on CRISPR-Cas9 non-viral precision genome-editing to simultaneously knockout the two endogenous TCR genes TRAC (which encodes TCRα) and TRBC (which encodes TCRβ). We also inserted into the TRAC locus two chains of a neoantigen-specific TCR (neoTCR) isolated from circulating T cells of patients. The neoTCRs were isolated using a personalized library of soluble predicted neoantigen-HLA capture reagents. Sixteen patients with different refractory solid cancers received up to three distinct neoTCR transgenic cell products. Each product expressed a patient-specific neoTCR and was administered in a cell-dose-escalation, first-in-human phase I clinical trial ( NCT03970382 ). One patient had grade 1 cytokine release syndrome and one patient had grade 3 encephalitis. All participants had the expected side effects from the lymphodepleting chemotherapy. Five patients had stable disease and the other eleven had disease progression as the best response on the therapy. neoTCR transgenic T cells were detected in tumour biopsy samples after infusion at frequencies higher than the native TCRs before infusion. This study demonstrates the feasibility of isolating and cloning multiple TCRs that recognize mutational neoantigens. Moreover, simultaneous knockout of the endogenous TCR and knock-in of neoTCRs using single-step, non-viral precision genome-editing are achieved. The manufacture of neoTCR engineered T cells at clinical grade, the safety of infusing up to three gene-edited neoTCR T cell products and the ability of the transgenic T cells to traffic to the tumours of patients are also demonstrated.<br /> (© 2022. The Author(s).)

Details

Language :
English
ISSN :
1476-4687
Volume :
615
Issue :
7953
Database :
MEDLINE
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
36356599
Full Text :
https://doi.org/10.1038/s41586-022-05531-1