In Silico Identification of Chalcone-Imine Hybrids as a Promising Ptpn11 Inhibitors: An Integrated Network Pharmacology, Docking and ADMET Study

Authors

DOI:

https://doi.org/10.33974/6p2zbk16

Keywords:

Chalcone-imine hybrids, Network Pharmacology, Breast Cancer, Molecular Docking

Abstract

Breast cancer is one of the most prevalent malignancies and a leading cause of cancer- related deaths among women. Although considerable progress has been made in diagnosis and treatment, the development of drug resistance and metastasis remains a significant therapeutic challenge. Targeting oncogenic signaling proteins such as tyrosine-protein phosphatase non-receptor type 11 (PTPN11) has emerged as a promising strategy for the development of effective anticancer therapies. In the present study, fifteen chalcone-imine hybrids have been designed. Network pharmacology approach was employed to identifying top targets. The overlapping targets were subjected to protein-protein interaction (PPI) analysis using the STRING database, followed by hub gene identification through Cytoscape software, and revealed that the compounds may exert their anti-breast cancer effects by modulating key breast cancer-related signaling pathways. Survival analysis was performed using the GEPIA database and the expression analysis revealed that PTPN11 as a promising therapeutic target. To validate these findings, molecular docking was carried out against selected target proteins, and the binding affinities and interaction profiles were compared with those of co-crystallized ligands and standard anticancer drugs. The results revealed that all the designed compounds have pronounced activity against PTPN11. In conclusion, these findings suggest that chalcone-imine hybrids represent promising candidates for anti-breast cancer drug development.

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Published

08-08-2026

How to Cite

In Silico Identification of Chalcone-Imine Hybrids as a Promising Ptpn11 Inhibitors: An Integrated Network Pharmacology, Docking and ADMET Study. (2026). International Journal of Research in Pharmaceutical Sciences and Technology, 9(3). https://doi.org/10.33974/6p2zbk16

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