ArticleJournal of clinical pharmacology2026
In Vitro and Clinical Evaluation of Potential Interactions of Bemnifosbuvir with Drug-Metabolizing Enzymes.
Article in Journal of clinical pharmacology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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11 authors.
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Abstract
Bemnifosbuvir is a novel oral guanosine nucleotide prodrug with potent pan-genotypic inhibitory activity against hepatitis C virus. In vitro studies assessing the inhibition or induction potential of bemnifosbuvir on the CYP450 and UGT1A1 enzymes demonstrated that bemnifosbuvir is a weak inducer and a reversible and time-dependent inhibitor of CYP3A4. These results prompted further evaluation in a Phase 1 clinical study in healthy participants who received midazolam (a sensitive CYP3A4 substrate) without and with simultaneous or staggered doses of bemnifosbuvir. A single simultaneous 550 mg bemnifosbuvir dose increased the total plasma exposure of a single 2 mg midazolam dose by 24% via reversible inhibition. Simultaneous coadministration of bemnifosbuvir 550 mg twice daily increased the total plasma exposure to midazolam by 98% as an outcome of reversible/time-dependent inhibition and induction. Simultaneous coadministration of a single and repeat dose of bemnifosbuvir increased the total plasma exposure to 1-hydroxymidazolam (primary metabolite of midazolam) by 22% and 27%, respectively. Staggered coadministration generally had a lower effect on plasma exposure to both midazolam and 1-hydroxymidazolam. Conversely, midazolam had no significant effect on the pharmacokinetics of bemnifosbuvir. Overall, bemnifosbuvir was a weak clinical inhibitor (geometric mean ratio <2) of CYP3A4.
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