Home
World Journal of Biology Pharmacy and Health Sciences
ISSN Approved | International, Peer reviewed, Referred, Open access Journal

Main navigation

  • Home
    • Journal Information
    • Abstracting and Indexing
    • Editorial Board Members
    • Reviewer Panel
    • Journal Policies
    • WJBPHS CrossMark Policy
    • Publication Ethics
    • Current Issue
    • Issue in Progress
    • Past Issues
    • Instructions for Authors
    • Article processing fee
    • Track Manuscript Status
    • Get Publication Certificate
    • Become a Reviewer panel member
    • Join as Editorial Board Member
  • Contact us
  • Downloads

ISSN Approved Journal | | IMPACT FACTOR 8.16 | | eISSN: 2582-5542 | |  Free Crossref DOI 

Fast Publication within 2 days | | Low Article Processing Charges | | Peer Reviewed and Referred Journal

Research and review articles are invited for publication in September 2026 (Volume 27, Issue 3) Submit Paper

In silico molecular docking approach to investigate the anti-diabetic potential of natural, semi-synthetic, and synthetic compounds for diabetes management

Breadcrumb

  • Home
  • In silico molecular docking approach to investigate the anti-diabetic potential of natural, semi-synthetic, and synthetic compounds for diabetes management

 Harshitha V *, Smitha Jose, Dhanush GS * and Digvijaymandal

Visveswarapura Institute of Pharmaceutical Sciences, Bengaluru 560070, Karnataka. 

Research Article

World Journal of Biology Pharmacy and Health Sciences, 2025, 23(02), 301–314

Article DOI: 10.30574/wjbphs.2025.23.2.0755

DOI url: https://doi.org/10.30574/wjbphs.2025.23.2.0755

Received on 07 July 2025; revised on 16 August; accepted on 19 August 2025

Oxidative stress plays a critical role in the pathogenesis of diabetes mellitus, and the nuclear factor erythroid 2 related factor 2 (Nrf2) pathway has emerged as a promising target for its regulation. Activation of Nrf2 enhances the transcription of antioxidant and cytoprotective genes, offering a novel therapeutic approach for managing diabetes. In silico molecular docking study, we employed molecular docking software to evaluate and compare the binding affinities of selected natural, semi-synthetic, and synthetic compounds against key Nrf2 pathway proteins, particularly the Keap1-Nrf2 interaction site. The compounds were docked to assess their potential to disrupt the Keap1-Nrf2 complex and thereby promote Nrf2 activation. The evaluated compounds possessed good docking scores and followed Lipinski Rule of 5, with additional pharmacokinetic predictions using SwissADME to evaluate binding energies, hydrogen bond formation, and the specific amino acid residues involved in the interactions. These findings support the role of both natural and synthetic molecules in modulating oxidative stress through the Nrf2 pathway. Further in vitro and in vivo studies are warranted to validate these results and explore their therapeutic applications in diabetes management.

Nrf2 pathway; Diabetes mellitus; Oxidative stress; Molecular docking; Keap1; Natural compounds; Synthetic drugs; Drug repurposing; Antioxidant response

https://wjbphs.com/sites/default/files/fulltext_pdf/WJBPHS-2025-0755.pdf

Preview Article PDF

Harshitha V, Smitha Jose, Dhanush GS and Digvijaymandal. In silico molecular docking approach to investigate the anti-diabetic potential of natural, semi-synthetic, and synthetic compounds for diabetes management. World Journal of Biology Pharmacy and Health Sciences, 2025, 23(02), 301-314. Article DOI: https://doi.org/10.30574/wjbphs.2025.23.2.0755.

Get Certificates

Get Publication Certificate

Download LoA

Check Corssref DOI details

Issue details

Issue Cover Page

Editorial Board

Table of content


Copyright © Author(s). All rights reserved. This article is published under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, sharing, adaptation, distribution, and reproduction in any medium or format, as long as appropriate credit is given to the original author(s) and source, a link to the license is provided, and any changes made are indicated.


Copyright © 2026 World Journal of Biology Pharmacy and Health Sciences (WJBPHS) - All rights reserved

Developed & Designed by VS Infosolution