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In vivo CAR T cell generation to treat cancer and autoimmune disease

Theresa HunterYanjie BaoYan ZhangDaiki MatsudaRomina RienerAnnabel WangJunyi LiFerran SoldevilaDavid S. H. ChuD. NguyenQian-Chen YongBrittany RossMichelle NguyenJ. Robie VestalScott RobertsDiana GalvanJerel VegaDonald JhungMatthew ButcherJosephine T. NguyenStanley ZhangClaudia FernandezJ.H. ChenCarolina HerreraYi Chun KuoEmiliano PicaGoutam MondalAndrew L. MammenMuscle Disease Section, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, MD, USAJohn SchollerCenter for Cellular Immunotherapies, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA, USASteven P. TanisStuart A. SieversAric M. FrantzGregor B. AdamsLaura K. ShawverRamin Farzaneh‐FarMichael RosenzweigPriya KarmaliAdrian BotCarl H. JuneCenter for Cellular Immunotherapies, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA, USAHaig AghajanianCapstan Therapeutics, San Diego, CA, USA
2025en
ABI

Аннотация

Chimeric antigen receptor (CAR) T cell therapies have transformed treatment of B cell malignancies. However, their broader application is limited by complex manufacturing processes and the necessity for lymphodepleting chemotherapy, restricting patient accessibility. We present an in vivo engineering strategy using targeted lipid nanoparticles (tLNPs) for messenger RNA delivery to specific T cell subsets. These tLNPs reprogrammed CD8 + T cells in both healthy donor and autoimmune patient samples, and in vivo dosing resulted in tumor control in humanized mice and B cell depletion in cynomolgus monkeys. In cynomolgus monkeys, the reconstituted B cells after depletion were predominantly naïve, suggesting an immune system reset. By eliminating the requirements for complex ex vivo manufacturing, this tLNP platform holds the potential to make CAR T cell therapies more accessible and applicable across additional clinical indications.

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Цитирований: 2Использованных источников: 0