Original ArticleIndian Journal of Pharmaceutical Education and ResearchVol. 60 | Issue 3 | 2026 | pp. 1268–1275Open access
Exploring the Mechanism of Isoliquiritigenin on Lung Cancer Based on Network Pharmacology and Molecular Docking
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- 1 Department of Thoracic Oncology Surgery, Clinical Oncology School of Fujian Medical University, Fujian Cancer Hospital, Fuzhou, Fujian, CHINA.
Published in Indian Journal of Pharmaceutical Education and Research
Correspondence: Yijin Lin
Department of Thoracic Oncology Surgery, Clinical Oncology School of Fujian Medical University, Fujian Cancer Hospital, Fuzhou, Fujian, CHINA.
Email: linyijin10698@163.com
Copyright: © 2026 Manuscript Technomedia. This is an open access article.
- Published:
- Apr 23, 2026
- Received:
- Dec 18, 2025
- Accepted:
- Apr 21, 2026
How to cite
Weng, G., Fang, W., Su, W., Chen, L., Liao, M., & Lin, Y. (2026). Exploring the Mechanism of Isoliquiritigenin on Lung Cancer Based on Network Pharmacology and Molecular Docking. Indian Journal of Pharmaceutical Education and Research, 60(3), 1268–1275. https://doi.org/10.5530/ijper.20260503
Abstract
Objectives: This study aims to explore how Isoliquiritigenin (ISL) combats lung cancer by using network pharmacology and molecular docking techniques. Materials and Methods: We used multiple databases to find ISL-related targets and lung cancer-associated genes, followed by enrichment analysis using the Cluster Profiler package. Network analysis via the STRING database and Cytoscape illuminated the protein-protein interaction landscape. The Kaplan-Meier plotter evaluated the prognostic relevance of gene expression. Molecular docking assessed the binding affinity of ISL to key proteins. Results: Our study identified 412 ISL targets and intersected these with 15,373 lung cancer-related genes, pinpointing 232 genes of potential therapeutic interest. Enrichment analysis revealed significant pathways, including those related to cancer and cellular signaling. Network analysis underscored key nodes such as AKT1, TNF, EGFR, HSP90AA1 and ESR1. Molecular docking confirmed substantial binding affinities, suggesting inhibitory capabilities against these proteins. Discussion: The enrichment analysis implicated ISL in modulating a spectrum of biological processes, particularly those involved in cell communication and systemic biological functions. Key genes identified via network analysis could serve as novel targets for intervention. Molecular docking emphasized ISL's potential as a multi-target inhibitor, thus reinforcing its candidacy as a promising therapeutic agent against lung cancer.
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Article metadata
| Title | Exploring the Mechanism of Isoliquiritigenin on Lung Cancer Based on Network Pharmacology and Molecular Docking |
|---|---|
| Authors | Guibin Weng; Weimin Fang; Weikun Su; Lin Chen; Menglin Liao; Yijin Lin |
| Affiliations | Department of Thoracic Oncology Surgery, Clinical Oncology School of Fujian Medical University, Fujian Cancer Hospital, Fuzhou, Fujian, CHINA. |
| Corresponding author | linyijin10698@163.com |
| Journal | Indian Journal of Pharmaceutical Education and Research |
| Volume / Issue | Vol. 60, Issue 3 (2026) |
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