Harnessing the Potential of mRNA Vaccines Against Hepatitis C Virus 2309530

B Branka Grubor-Bauk (University of Adelaide Adelaide Medical School) H Henrik Johansson M Makutiro Masavuli (University of Adelaide) J Jordan Minnell (Malaghan Institute of Medical Research, Wellington, New Zealand) L Lauren Holz (Doherty Institute, University of Melbourne, Australia) G Gavin Painter (Maurice Wilkins Centre for Molecular Biodiscovery & 4Ferrier Research Institute, Victoria University of Wellington, NZ) I Ian Hermans (Malaghan Institute of Medical Research, New Zealand)

Abstract

Abstract Introduction Chronic hepatitis C virus (HCV) infection affects 58 million people globally and remains a major cause of cirrhosis and hepatocellular carcinoma. Aproximately 1 million new infections 250,000-related deaths occur annually, yet no vaccine exists. WHO has identified HCV as a top-priority virus requiring a vaccine to achieve viral hepatitis elimination. Increasing evidence implicates liver-resident memory CD8+ T (TRM) cells as key mediators of protection against hepatotropic pathogens. We therefore investigated whether mRNA vaccines can be engineered to establish robust intrahepatic TRM responses against HCV. Methods Nucleoside-modified mRNA encoding HCV genotype 3a NS5B polymerase was formulated in ALC-0315 or MC3 lipid nanoparticles (LNPs) or in DOTAP/DOPE liposomes to form lipid-complexed RNA (LPX). To enhance immunogenicity, LPX was co-formulated with the invariant NKT agonist α-galactosyl-ceramide analogue (α-GCB). BALB/c mice (n = 5/group) received 5 µg mRNA per dose: via intramuscular, intradermal or intravenous routes. HCV-specific CD8+ T cells were quantified using flow cytometry, IFN-γ ELISPOT and intracellular cytokine staining in liver and the spleen. Results All formulations induced systemic and intrahepatic NS5B-specific CD8+ T cells, but only LPX-mRNA induced bona fide liver TRM cells. Co-delivery with α-GCB significantly increased TRM magnitude and numbers while homologous boosting further expanded durable intrahepatic TRM cells persisting to day 60 post-vaccination. Conclusion This study provides the first evidence that a HCV vaccine can elicit liver-resident memory CD8+ T cells. LPX’s hepatic tropism, combined with α-GCB driven NKT activation, efficiently imprints robust, durable liver TRM responses, supporting LPX-mRNA/α-GCB as a promising, platform for next-generation HCV vaccines Funding Source ACH4 (Australia) Topic Categories Vaccines and Immunotherapy (VAC)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (7)

B

Branka Grubor-Bauk

University of Adelaide Adelaide Medical School

H

Henrik Johansson

M

Makutiro Masavuli

University of Adelaide

J

Jordan Minnell

Malaghan Institute of Medical Research, Wellington, New Zealand

L

Lauren Holz

Doherty Institute, University of Melbourne, Australia

G

Gavin Painter

Maurice Wilkins Centre for Molecular Biodiscovery & 4Ferrier Research Institute, Victoria University of Wellington, NZ

I

Ian Hermans

Malaghan Institute of Medical Research, New Zealand