Comparative assessment of favipiravir and remdesivir against human coronavirus NL63 in molecular docking and cell culture models

Sci Rep. 2021 Dec 6;11(1):23465. doi: 10.1038/s41598-021-02972-y.

Abstract

Human coronavirus NL63 (HCoV-NL63) mainly affects young children and immunocompromised patients, causing morbidity and mortality in a subset of patients. Since no specific treatment is available, this study aims to explore the anti-SARS-CoV-2 agents including favipiravir and remdesivir for treating HCoV-NL63 infection. We first successfully modelled the 3D structure of HCoV-NL63 RNA-dependent RNA polymerase (RdRp) based on the experimentally solved SARS-CoV-2 RdRp structure. Molecular docking indicated that favipiravir has similar binding affinities to SARS-CoV-2 and HCoV-NL63 RdRp with LibDock scores of 75 and 74, respectively. The LibDock scores of remdesivir to SARS-CoV-2 and HCoV-NL63 were 135 and 151, suggesting that remdesivir may have a higher affinity to HCoV-NL63 compared to SARS-CoV-2 RdRp. In cell culture models infected with HCoV-NL63, both favipiravir and remdesivir significantly inhibited viral replication and production of infectious viruses. Overall, remdesivir compared to favipiravir is more potent in inhibiting HCoV-NL63 in cell culture. Importantly, there is no evidence of resistance development upon long-term exposure to remdesivir. Furthermore, combining favipiravir or remdesivir with the clinically used antiviral cytokine interferon-alpha resulted in synergistic effects. These findings provided a proof-of-concept that anti-SARS-CoV-2 drugs, in particular remdesivir, have the potential to be repurposed for treating HCoV-NL63 infection.

Publication types

  • Comparative Study
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adenosine Monophosphate / analogs & derivatives*
  • Adenosine Monophosphate / chemistry
  • Adenosine Monophosphate / metabolism
  • Adenosine Monophosphate / pharmacology
  • Alanine / analogs & derivatives*
  • Alanine / chemistry
  • Alanine / metabolism
  • Alanine / pharmacology
  • Amides / chemistry*
  • Amides / metabolism
  • Amides / pharmacology
  • Animals
  • Antiviral Agents / chemistry*
  • Antiviral Agents / metabolism
  • Antiviral Agents / pharmacology
  • Binding Sites
  • Cell Culture Techniques
  • Cell Line
  • Coronavirus NL63, Human / enzymology*
  • Coronavirus NL63, Human / physiology
  • Haplorhini
  • Humans
  • Molecular Docking Simulation
  • Pyrazines / chemistry*
  • Pyrazines / metabolism
  • Pyrazines / pharmacology
  • RNA-Dependent RNA Polymerase / chemistry*
  • RNA-Dependent RNA Polymerase / metabolism
  • Virus Replication / drug effects

Substances

  • Amides
  • Antiviral Agents
  • Pyrazines
  • remdesivir
  • Adenosine Monophosphate
  • RNA-Dependent RNA Polymerase
  • favipiravir
  • Alanine