Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Prediction of African Swine Fever Virus Inhibitors by Molecular Docking-Driven Machine Learning Models

Domaine:

healthcare

Type de record:

paper
Créateur:
JiwJunHyeYon
Éditeur:
MDP
Hôte:
African swine fever virus (ASFV) causes a highly contagious and severe hemorrhagic viral disease with high mortality in domestic pigs of all ages. Although the virus is harmless to humans, the ongoing ASFV epidemic could have severe economic consequences for global food security. Recent studies have found a few antiviral agents that can inhibit ASFV infections. However, currently, there are no vaccines or antiviral drugs. Hence, there is an urgent need to identify new drugs to treat ASFV. Based on the structural information data on the targets of ASFV, we used molecular docking and machine learning models to identify novel antiviral agents. We confirmed that compounds with high affinity present in the region of interest belonged to subsets in the chemical space using principal component analysis and k-means clustering in molecular docking studies of FDA-approved drugs. These methods predicted pentagastrin as a potential antiviral drug against ASFVs. Finally, it was also observed that the compound had an inhibitory effect on AsfvPolX activity. Results from the present study suggest that molecular docking and machine learning models can play an important role in identifying potential antiviral drugs against ASFVs.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by/4.0/

Similaires

Epidemiology of African Swine Fever VirusIn silico prediction of B- and T-cell epitopes in the CD2v protein of african swine fever virus (African swine fever virus, Asfivirus, Asfarviridae)Molecular Simulations driven Identification of Natural Compounds as Marburg Virus VP35 InhibitorsAfrican swine fever virus biotype identification toolStructure of African Swine Fever Virus and Associated Molecular Mechanisms Underlying Infection and Immunosuppression: A ReviewNew agents active against African swine fever virus

Epidemiology of African Swine Fever Virus

In silico prediction of B- and T-cell epitopes in the CD2v protein of african swine fever virus (African swine fever virus, Asfivirus, Asfarviridae)

Introduction. African swine fever virus (ASF) is a large DNA virus that is the only member of the As

Molecular Simulations driven Identification of Natural Compounds as Marburg Virus VP35 Inhibitors

Marburg virus (Marv) hemorrhagic fever is a sporadic and highly lethal disease endemic to several Af

African swine fever virus biotype identification tool

ABSTRACT African swine fever virus biotyping is a recently d

Structure of African Swine Fever Virus and Associated Molecular Mechanisms Underlying Infection and Immunosuppression: A Review

African swine fever (ASF) is an acute, highly contagious, and deadly infectious disease. The mortali

New agents active against African swine fever virus

Actinobolin, atropine, carrageenan, megalomycin C, suramin, and tetracenomycin C were tested for the