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Updated: Mar 23, 2026

Early Viral Entry Assays for the Identification and Evaluation of Antiviral Compounds
Published on: October 29, 2015
Evaluation of antiviral drug synergy in an infectious HCV system
Billy Lin1, Shanshan He1, Hyung Joon Yim1
1Liver Diseases Branch, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD, USA.
Background:
Direct-acting antivirals (DAAs) have greatly improved the treatment of HCV infection. To improve response and prevent resistance, combination regimens have been the focus of clinical development. Regimens are often first assessed in vitro, with most combination studies to date using subgenomic replicon systems, which do not replicate the complete HCV life cycle and preclude study of entry and assembly inhibitors. Infectious full-length HCV systems have been developed and are being used to test drug efficacy.
Methods:
Using cell-based HCV Con1b replicon and an infectious full-length HCV (HCVcc-Luc) infection system, we systematically tested the synergy, additivity or antagonism of combinations of protease, NS5A and nucleotide NS5B inhibitor classes as well as the combination of these DAAs with host-targeting agent cyclosporin A or non-antibody entry inhibitor (S)-chlorcyclizine. Two computational software packages, MacSynergyII and CalcuSyn, were used for data analysis.
Results:
Combinations between different classes showed good consistency across the two viral assay systems and two software platforms. Combinations between NS5A and nucleotide NS5B inhibitors were synergistic, while combinations of protease inhibitors with the other two classes were additive to slightly antagonistic. As expected, combinations of antivirals of the same class were additive. Combination studies between these DAA classes and cyclosporin A or (S)-chlorcyclizine demonstrated additive to synergistic effects and highly synergistic effects, respectively. Combinations of these drugs did not show any added or unexpected cytotoxicity.
Conclusions:
Our results show that in vitro combination studies of anti-HCV DAAs in the HCVcc system may provide useful guidance for drug combination designs in clinical studies. We also demonstrate that these DAAs in combination with host-targeting agents or entry inhibitors may improve HCV treatment response.
Insights
Direct-acting antivirals (DAAs) combinations show synergistic effects in treating Hepatitis C virus (HCV) infection. Combining DAAs with host-targeting agents or entry inhibitors may improve treatment outcomes and prevent drug resistance.
Area of Science:
- Hepatology and Virology
- Drug Discovery and Development
- Infectious Diseases
Background:
- Direct-acting antivirals (DAAs) have revolutionized Hepatitis C virus (HCV) treatment.
- Combination regimens are crucial for enhancing efficacy and preventing drug resistance.
- Current in vitro studies often use subgenomic replicons, limiting the scope of drug efficacy assessment.
Purpose of the Study:
- To systematically evaluate the in vitro efficacy of various direct-acting antiviral (DAA) combinations against HCV.
- To assess the synergistic, additive, or antagonistic effects of DAA combinations with host-targeting agents and entry inhibitors.
- To validate findings using both replicon and full-length infectious HCV systems and multiple analysis software.
Main Methods:
- Utilized cell-based HCV Con1b replicon and infectious full-length HCV (HCVcc-Luc) systems.
- Tested combinations of protease, NS5A, and nucleotide NS5B inhibitors.
- Evaluated DAAs combined with cyclosporin A (host-targeting) and (S)-chlorcyclizine (entry inhibitor).
- Analyzed data using MacSynergyII and CalcuSyn software.
Main Results:
- NS5A and nucleotide NS5B inhibitor combinations demonstrated synergy.
- Protease inhibitor combinations showed additive to slightly antagonistic effects.
- DAA combinations with cyclosporin A and (S)-chlorcyclizine exhibited additive to synergistic and highly synergistic effects, respectively.
- No added cytotoxicity was observed for drug combinations.
Conclusions:
- In vitro studies using full-length HCV systems can guide clinical DAA combination strategies.
- Combining DAAs with host-targeting agents or entry inhibitors shows promise for improved HCV treatment.
- These findings support the development of novel combination therapies for HCV infection.
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