Skip to main navigation Skip to search Skip to main content

Development of a new drug candidate for the inhibition of Lassa virus glycoprotein and nucleoprotein by modification of evodiamine as promising therapeutic agents

  • Shopnil Akash
  • , Javiera Baeza
  • , Sajjat Mahmood
  • , Nobendu Mukerjee
  • , Vetriselvan Subramaniyan
  • , Md Rezaul Islam
  • , Gaurav Gupta
  • , Vinibha Rajakumari
  • , Suresh V. Chinni
  • , Gobinath Ramachawolran
  • , Fayez M. Saleh
  • , Ghadeer M. Albadrani
  • , Amany A. Sayed
  • , Mohamed M. Abdel-Daim
  • University of Dhaka
  • Universidad de Talca
  • Universidad de Chile
  • Jagannath University
  • West Bengal State University
  • Novel Global Community Educational Foundation
  • Monash University Malaysia
  • Saveetha Institute of Medical and Technical Sciences (Deemed to be University)
  • Suresh Gyan Vihar University
  • Uttaranchal University
  • MAHSA University
  • RCSI & UCD Malaysia Campus
  • University of Tabuk
  • Princess Nourah Bint Abdulrahman University
  • Cairo University
  • Batterjee Medical College
  • Faculty of Veterinary Medicine

Research output: Contribution to journalArticlepeer-review

19 Scopus citations

Abstract

The Lassa virus (LASV), an RNA virus prevalent in West and Central Africa, causes severe hemorrhagic fever with a high fatality rate. However, no FDA-approved treatments or vaccines exist. Two crucial proteins, LASV glycoprotein and nucleoprotein, play vital roles in pathogenesis and are potential therapeutic targets. As effective treatments for many emerging infections remain elusive, cutting-edge drug development approaches are essential, such as identifying molecular targets, screening lead molecules, and repurposing existing drugs. Bioinformatics and computational biology expedite drug discovery pipelines, using data science to identify targets, predict structures, and model interactions. These techniques also facilitate screening leads with optimal drug-like properties, reducing time, cost, and complexities associated with traditional drug development. Researchers have employed advanced computational drug design methods such as molecular docking, pharmacokinetics, drug-likeness, and molecular dynamics simulation to investigate evodiamine derivatives as potential LASV inhibitors. The results revealed remarkable binding affinities, with many outperforming standard compounds. Additionally, molecular active simulation data suggest stability when bound to target receptors. These promising findings indicate that evodiamine derivatives may offer superior pharmacokinetics and drug-likeness properties, serving as a valuable resource for professionals developing synthetic drugs to combat the Lassa virus.

Original languageEnglish
Article number1206872
JournalFrontiers in Microbiology
Volume14
DOIs
StatePublished - 2023
Externally publishedYes

Keywords

  • ADMET
  • Lassa fever virus
  • drug discovery
  • emerging viral infections
  • evodiamine
  • molecular docking
  • molecular dynamics simulation

Fingerprint

Dive into the research topics of 'Development of a new drug candidate for the inhibition of Lassa virus glycoprotein and nucleoprotein by modification of evodiamine as promising therapeutic agents'. Together they form a unique fingerprint.

Cite this