mRNA aggregates harness danger response for potent cancer immunotherapy
Mendez-Gomez, H.; DeVries, A.; Castillo, P.; Stover, B.; Qdaisat, S.; Von Roemling, C.; Ogando-Rivas, E.; Weidert, F.; McGuiness, J.; Zhang, D.; Chung, M. C.; Li, D.; Zhao, C.; Marconi, C.; Campaneria, Y.; Chardon-Robles, J.; Grippin, A.; Karachi, A.; Thomas, N.; Huang, J.; Milner, R.; Sahay, B.; Sawyer, W. G.; Ligon, J. A.; Silver, N.; Simon, E.; Cleaver, B.; Wynne, K.; Hodik, M.; Molinaro, A.; Guan, J.; Kellish, P.; Doty, A.; Lee, J.-H.; Carrera-Justiz, S.; Rahman, M.; Gatica, S.; Mueller, S.; Prados, M.; Ghiaseddin, A.; Mitchell, D. A.; Sayour, E. J.
Show abstract
Messenger RNA (mRNA) has emerged as a remarkable tool for COVID-19 prevention but its use for induction of therapeutic cancer immunotherapy remains limited by poor antigenicity and a regulatory tumor microenvironment (TME). Herein, we develop a facile approach for substantially enhancing immunogenicity of tumor-derived mRNA in lipid-particle (LP) delivery systems. By using mRNA as a molecular bridge with ultrapure liposomes and foregoing helper lipids, we promote the formation of onion-like multi-lamellar RNA-LP aggregates (LPA). Intravenous administration of RNA-LPAs mimics infectious emboli and elicits massive DC/T cell mobilization into lymphoid tissues provoking cancer immunogenicity and mediating rejection of both early and late-stage murine tumor models. Unlike current mRNA vaccine designs that rely on payload packaging into nanoparticle cores for toll-like receptor engagement, RNA-LPAs stimulate intracellular pathogen recognition receptors (RIG-I) and reprogram the TME thus enabling therapeutic T cell activity. RNA-LPAs were safe in acute/chronic murine GLP toxicology studies and immunologically active in client-owned canines with terminal gliomas. In an early phase first-in-human trial for patients with glioblastoma, we show that RNA-LPAs encoding for tumor-associated antigens elicit rapid induction of pro-inflammatory cytokines, mobilization/activation of monocytes and lymphocytes, and expansion of antigen-specific T cell immunity. These data support the use of RNA-LPAs as novel tools to elicit and sustain immune responses against poorly immunogenic tumors.
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