Discovery of SARS-CoV-2 antiviral synergy between remdesivir and approved drugs in human lung cells

发现瑞德西韦与已批准药物在人类肺细胞中具有 SARS-CoV-2 抗病毒协同作用

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作者:Xammy Nguyenla #, Eddie Wehri #, Erik Van Dis #, Scott B Biering #, Livia H Yamashiro #, Chi Zhu, Julien Stroumza, Claire Dugast-Darzacq, Thomas G W Graham, Xuanting Wang, Steffen Jockusch, Chuanjuan Tao, Minchen Chien, Wei Xie, Dinshaw J Patel, Cindy Meyer, Aitor Garzia, Thomas Tuschl, James J Russ

Abstract

SARS coronavirus 2 (SARS-CoV-2) has caused an ongoing global pandemic with significant mortality and morbidity. At this time, the only FDA-approved therapeutic for COVID-19 is remdesivir, a broad-spectrum antiviral nucleoside analog. Efficacy is only moderate, and improved treatment strategies are urgently needed. To accomplish this goal, we devised a strategy to identify compounds that act synergistically with remdesivir in preventing SARS-CoV-2 replication. We conducted combinatorial high-throughput screening in the presence of submaximal remdesivir concentrations, using a human lung epithelial cell line infected with a clinical isolate of SARS-CoV-2. This identified 20 approved drugs that act synergistically with remdesivir, many with favorable pharmacokinetic and safety profiles. Strongest effects were observed with established antivirals, Hepatitis C virus nonstructural protein 5A (HCV NS5A) inhibitors velpatasvir and elbasvir. Combination with their partner drugs sofosbuvir and grazoprevir further increased efficacy, increasing remdesivir's apparent potency > 25-fold. We report that HCV NS5A inhibitors act on the SARS-CoV-2 exonuclease proofreader, providing a possible explanation for the synergy observed with nucleoside analog remdesivir. FDA-approved Hepatitis C therapeutics Epclusa® (velpatasvir/sofosbuvir) and Zepatier® (elbasvir/grazoprevir) could be further optimized to achieve potency and pharmacokinetic properties that support clinical evaluation in combination with remdesivir.

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