In-silico ANALYSIS OF N-PHENYL PYRAZOLINE DERIVATES AS POTENTIAL OF HUMAN EPIDERMAL GROWTH RECEPTOR-2 (HER-2) INHIBITOR USING MOLECULAR DOCKING AND MD SIMULATIONS

Satria, D and Waruwu, S.B and Sholikhah, E.N. and Mustofa, Mustofa and Satriyo, P.B. and Wahyuningsih, T.D. and Wiraswati, H.L. and Damayanti, E (2024) In-silico ANALYSIS OF N-PHENYL PYRAZOLINE DERIVATES AS POTENTIAL OF HUMAN EPIDERMAL GROWTH RECEPTOR-2 (HER-2) INHIBITOR USING MOLECULAR DOCKING AND MD SIMULATIONS. Rasayan Journal of Chemistry, 17 (2). pp. 356-362. ISSN 09741496

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Abstract

One of the most typical cancers to affect women worldwide is breast cancer. Multiple routes involving different proteins that control the development of cancer. HER-2 is a protein that contributes to the progression of breast cancer cells. This study uses n-phenyl pyrazoline derivate compounds. The predictive binding of several forms of pyrazoline compounds to HER-2 was analyzed using docking analysis in an in silico model. Pyrazoline A, B, C, D, and M were used as ligands, and neratinib as a commercial drug. Pyrazoline C was the ligand with the highest affinity (-109.218 Kcal/mol) if compared with native ligand 03Q (-170.697 Kcal/mol) and neratinib (-83.416 Kcal/mol). Pyrazoline C has the potential to develop as a breast cancer drug with COX-2 inhibitory activity. The molecular dynamics simulation for 50 ns showed that RMSD, RMSF, and SASA are rigid and stable. Pyrazoline C has the potential to develop as a breast cancer drug with HER-2 inhibitory activity.

Item Type: Article
Uncontrolled Keywords: Anticancer Drugs; HER-2; MD Simulation; Molecular Docking; Pyrazolines
Subjects: Q Science > QD Chemistry
Divisions: Faculty of Mathematics and Natural Sciences > Chemistry Department
Depositing User: Ismu WIDARTO
Date Deposited: 04 Jun 2025 08:31
Last Modified: 04 Jun 2025 08:31
URI: https://ir.lib.ugm.ac.id/id/eprint/18806

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