Abstract
The dramatic antiviral activities of drugs that specifically inhibit hepatitis C virus replication can be tempered by baseline mutations that confer resistance. We describe the kinetics of an R155K mutation in hepatitis C virus (HCV) NS3 protease knownto confer resistance to specific protease inhibitors in an individual coinfected with human immunodeficiency virus-1 and HCV. Longitudinal sequences revealed changes in the relative frequency with which this variant was observed independent of HCV replication levels, illustrating that this mutation coexists with wild-type strains in vivo in the absence of drugs. The persistence of drug-resistance mutations argues for baseline resistance genotyping at the time therapy is initiated to accurately predict the efficacy of treatment. © 2009 by the Infectious Diseases Society of America. All rights reserved.
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CITATION STYLE
Kim, A. Y., Timm, J., Nolan, B. E., Reyor, L. L., Kane, K., Berical, A. C., … Allen, T. M. (2009). Temporal dynamics of a predominant protease inhibitor-resistance mutation in a treatment-naive, hepatitis C virus-infected individual. Journal of Infectious Diseases, 199(5), 737–741. https://doi.org/10.1086/596657
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