Efficient synthesis of antiviral agent uprifosbuvir enabled by new synthetic methods

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Abstract

An efficient route to the HCV antiviral agent uprifosbuvir was developed in 5 steps from readily available uridine in 50% overall yield. This concise synthesis was achieved by development of several synthetic methods: (1) complexation-driven selective acyl migration/oxidation; (2) BSA-mediated cyclization to anhydrouridine; (3) hydrochlorination using FeCl3/TMDSO; (4) dynamic stereoselective phosphoramidation using a chiral nucleophilic catalyst. The new route improves the yield of uprifosbuvir 50-fold over the previous manufacturing process and expands the tool set available for synthesis of antiviral nucleotides.

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Klapars, A., Chung, J. Y. L., Limanto, J., Calabria, R., Campeau, L. C., Campos, K. R., … Zultanski, S. L. (2021). Efficient synthesis of antiviral agent uprifosbuvir enabled by new synthetic methods. Chemical Science, 12(26), 9031–9036. https://doi.org/10.1039/d1sc01978c

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