Endowing universal CAR T-cell with immune-evasive properties using TALEN-gene editing

Sumin Jo(Cellectis (United States)), Shipra Das(Cellectis (United States)), Alan F. Williams(Cellectis (United States)), Anne-Sophie Chrétien(Centre National de la Recherche Scientifique), Thomas Pagliardini(Centre National de la Recherche Scientifique), Aude Le Roy(Centre National de la Recherche Scientifique), Jorge Postigo(Cellectis (United States)), Diane Le Clerre, Billal Jahangiri(Cellectis (United States)), Isabelle Chion-Sotinel, Sandra Rozlan, Emilie Dessez, Agnès Gouble, Mathilde Dusséaux, Román Galetto, Aymeric Duclert, Emanuela Marcenaro(University of Genoa), Raynier Devillier(Centre National de la Recherche Scientifique), Daniel Olive(Centre National de la Recherche Scientifique), Philippe Duchâteau, Laurent Poirot(Cellectis (United States)), Julien Valton(Cellectis (United States))
Nature Communications
June 30, 2022
Cited by 150Open Access
Full Text

Abstract

Universal CAR T-cell therapies are poised to revolutionize cancer treatment and to improve patient outcomes. However, realizing these advantages in an allogeneic setting requires universal CAR T-cells that can kill target tumor cells, avoid depletion by the host immune system, and proliferate without attacking host tissues. Here, we describe the development of a novel immune-evasive universal CAR T-cells scaffold using precise TALEN-mediated gene editing and DNA matrices vectorized by recombinant adeno-associated virus 6. We simultaneously disrupt and repurpose the endogenous TRAC and B2M loci to generate TCRαβ- and HLA-ABC-deficient T-cells expressing the CAR construct and the NK-inhibitor named HLA-E. This highly efficient gene editing process enables the engineered T-cells to evade NK cell and alloresponsive T-cell attacks and extend their persistence and antitumor activity in the presence of cytotoxic levels of NK cell in vivo and in vitro, respectively. This scaffold could enable the broad use of universal CAR T-cells in allogeneic settings and holds great promise for clinical applications.


Related Papers

No related papers found

Powered by citation graph analysis