Screening of the Pandemic Response Box Library Identified CRM1/XPO1 as an Anti-Mammarenavirus Druggable Target

Chukwudi A Ofodile1,2, Beatrice Cubitt2, Ngozi Onyemelukwe3

  • 1Department of Medical Microbiology and Public Health, Faculty of Medical Laboratory Science, Nnamdi Azikiwe University, Awka 435102, Nigeria.

Viruses
|January 28, 2026
PubMed

Insights

New research identifies potent antiviral compounds against Mammarenaviruses (MaAv), including Lassa virus. Verdinexor, a host-directed therapy, shows promise for combination treatments against these significant human pathogens.

Area of Science:

  • Virology
  • Infectious Diseases
  • Drug Discovery

Background:

  • Mammarenaviruses (MaAv) cause persistent infections in rodents and severe zoonotic diseases in humans, including Lassa fever and hemorrhagic fevers.
  • Human pathogenic MaAvs like Lassa virus (LASV) and Junin virus (JUNV) pose significant public health threats with high fatality rates.
  • Current treatments for MaAv infections are limited, with ribavirin's efficacy being controversial, highlighting the urgent need for novel antiviral therapies.

Purpose of the Study:

  • To screen for novel antiviral compounds effective against Mammarenaviruses (MaAv).
  • To identify host-directed or direct-acting antiviral agents for potential therapeutic use against MaAv infections.
  • To explore synergistic combinations of antiviral compounds for enhanced efficacy.

Main Methods:

  • A high-throughput cell-based infection assay was utilized to screen a library of 400 diverse antimicrobial compounds.
  • The Pandemic Response Box was screened to identify inhibitors of MaAv replication.
  • Identified compounds were evaluated for their antiviral activity and potential synergistic effects.

Main Results:

  • Three potent anti-MaAv compounds were identified: Ro-24-7429, WO 2006118607 A2 (a dihydroorotate dehydrogenase inhibitor), and verdinexor (a selective inhibitor of nuclear export targeting XPO1/CRM1).
  • Verdinexor and WO 2006118607 A2 demonstrated significant synergistic antiviral activity in combination therapy.
  • These findings highlight the potential of verdinexor as a host-directed antiviral agent.

Conclusions:

  • Verdinexor is a promising host-directed antiviral candidate for treating MaAv infections.
  • Combination therapy involving verdinexor could be a viable strategy to combat human pathogenic MaAv.
  • Further development of these compounds could lead to much-needed therapeutics for MaAv diseases.

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