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

Nature. 2025-07; 
Amanda X Y Chen, Kah Min Yap, Joelle S Kim, Kevin Sek, Yu-Kuan Huang, Phoebe A Dunbar, Volker Wiebking, Jesse D Armitage, Isabelle Munoz, Kirsten L Todd, Emily B Derrick, Dat Nguyen, Junming Tong, Cheok Weng Chan, Thang X Hoang, Katherine M Audsley, Marit J van Elsas, Jim Middelburg, Joel N Lee, Maria N de Menezes, Thomas J Cole, Jasmine Li, Christina Scheffler, Andrew M Scott, Laura K Mackay, Jason Waithman, Jane Oliaro, Simon J Harrison, Ian A Parish, Junyun Lai, Matthew H Porteus, Imran G House, Phillip K Darcy, Paul A Beavis Cancer Immunology Program, Peter MacCallum Cancer Centre, Melbourne, Victoria, Australia.
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Abstract

The efficacy of chimeric antigen receptor (CAR) T cell therapy in solid tumours is limited by immunosuppression and antigen heterogeneity1-3. To overcome these barriers, 'armoured' CAR T cells, which secrete proinflammatory cytokines, have been developed4. However, their clinical application has been limited because of toxicity related to peripheral expression of the armouring transgene5. 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 del... More

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