Hepatitis C virus infection dynamics, treatment, and lipid nanoparticle–mediated infection in humanized liver chimeric mouse models
- Seung Bum Park
- Jaime Sánchez-Meza
- Regina Umarova
- Justin Shields
- Laura Collignon
- Xhuliana Sula
- Kenn Holmbeck
- Ji-Hoon Oh
- Patrizia Farci
- D. Lorne Tyrrell
- Jordan J. Feld
- Jens Bukh
- Charles M. Rice
- T. Jake Liang
2026-05-29
A major challenge in hepatitis C virus (HCV) research is the lack of an in vivo model that supports robust infection, antiviral testing, and vaccine development. The humanized liver chimeric mouse models support high-level viremia from various HCV sources, although they lack an immune system. Here, we used Fah −/− /Rag2 −/− /Il2rg −/− (FRG) and urokinase-type plasminogen activator–severe combined immunodeficiency ( uPA -SCID) mice engrafted with primary human hepatocytes to investigate HCV infection dynamics and evaluate lipid nanoparticle (LNP)–mediated delivery of full-length HCV RNA. Mice were inoculated with HCV-positive chimpanzee serum or LNP-encapsulated HCV RNA of various genotypes and developed viremia reaching 10 8 copies per milliliter. RNA-LNP–mediated infection mirrored serum-derived infection that was transmissible to naïve mice. Glecaprevir/pibrentasvir cleared viremia, and treated mice could be reinfected. The proportion of antibody-free HCV RNA in human serum correlated with infectivity. These findings demonstrate the utility of this model for studying HCV infection and treatment and highlight LNP-based RNA delivery as a scalable approach for generating standardized challenge inocula.