Rewiring endogenous genes in CAR T cells for tumour-restricted payload delivery.

Chen, Amanda X Y; Yap, Kah Min; Kim, Joelle S; Sek, Kevin; Huang, Yu-Kuan; Dunbar, Phoebe A; Wiebking, Volker; Armitage, Jesse D et al. · Nature · 2025

basic_science · Level V

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Abstract

The efficacy of chimeric antigen receptor (CAR) T cell therapy in solid tumours is limited by immunosuppression and antigen heterogeneity<sup>1-3</sup>. To overcome these barriers, 'armoured' CAR T cells, which secrete proinflammatory cytokines, have been developed<sup>4</sup>. However, their clinical application has been limited because of toxicity related to peripheral expression of the armouring transgene<sup>5</sup>. Here, we have developed a CRISPR knock-in strategy that leverages the regulatory mechanisms of endogenous genes to drive transgene expression in a tumour-localized manner. By screening endogenous genes with tumour-restricted expression, we have identified the NR4A2 and RGS16 promoters as promising candidates to support the delivery of cytokines such as IL-12 and IL-2 directly to the tumour site, leading to enhanced antitumour efficacy and long-term survival of mice in both syngeneic and xenogeneic models. This effect was concomitant with improved CAR T cell polyfunctionality, activation of endogenous antitumour immunity and a favourable safety profile, and was applicable in CAR T cells from patients.

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