Antimicrobial Agents and Chemotherapy · 2006 · 35 citations · 32 references
The lack of a robust small-animal model for hepatitis C virus (HCV) has hindered the discovery and development of novel drug treatments for HCV infections. We developed a reproducible and easily accessible xenograft mouse efficacy model in which HCV RNA replication is accurately monitored in vivo by real-time, noninvasive whole-body imaging of gamma-irradiated SCID mice implanted with a mouse-adapted luciferase replicon-containing Huh-7 cell line (T7-11). The model was validated by demonstrating that both a small-molecule NS3/4A protease inhibitor (BILN 2061) and human alpha interferon (IFN-alpha) decreased HCV RNA replication and that treatment withdrawal resulted in a rebound in replication, which paralleled clinical outcomes in humans. We further showed that protease inhibitor and IFN-alpha combination therapy was more effective in reducing HCV RNA replication than treatment with each compound alone and supports testing in humans. This robust mouse efficacy model provides a powerful tool for rapid evaluation of potential anti-HCV compounds in vivo as part of aggressive drug discovery efforts.
32
Isolation of a cDNA cLone Derived from a Blood-Borne Non-A, Non-B Viral Hepatitis Genome
Qui‐Lim Choo, George Kuo, Amy J. Weiner et al. · Science · 1989 · 6.9K citations
Replication of Subgenomic Hepatitis C Virus RNAs in a Hepatoma Cell Line
Volker Lohmann, Frank Körner, Jan Oliver Koch et al. · Science · 1999 · 2.8K citations
Complete Replication of Hepatitis C Virus in Cell Culture
Brett D. Lindenbach, Matthew J. Evans, Andrew J. Syder et al. · Science · 2005 · 2.2K citations
Binding of Hepatitis C Virus to CD81
Piero Pileri, Yasushi Uematsu, Susanna Campagnoli et al. · Science · 1998 · 2K citations