Investigation of Novel Nimesulide Derivatives Against Breast Cancer

dc.authorscopusid 57208644160
dc.authorscopusid 57390741500
dc.authorscopusid 58396726400
dc.authorscopusid 6506158277
dc.authorscopusid 25923160500
dc.authorscopusid 20635398000
dc.authorscopusid 20635398000
dc.contributor.author Birgül, Kaan
dc.contributor.author Atlıhan, İrem
dc.contributor.author Dere, Damla
dc.contributor.author Yelekçi, Kemal
dc.contributor.author Tiber, Pınar Mega
dc.contributor.author Orun, Oya
dc.contributor.author Küçükgüzel, Sükriye Güniz
dc.date.accessioned 2025-09-10T17:50:45Z
dc.date.available 2025-09-10T17:50:45Z
dc.date.issued 2025
dc.department Fenerbahçe University en_US
dc.department-temp [Birgül] Kaan, Department of Pharmaceutical Chemistry, Bahçeşehir Üniversitesi, Istanbul, Turkey, Department of Organic Chemistry, University of Chemistry and Technology, Prague, Prague, Czech Republic; [Atlıhan] İrem, Department of Biophysics, Marmara Üniversitesi Tip Fakültesi, Istanbul, Turkey; [Dere] Damla, Department of Molecular Biology and Genetics, Kadir Has Üniversitesi, Istanbul, Turkey; [Yelekçi] Kemal, Department of Molecular Biology and Genetics, Kadir Has Üniversitesi, Istanbul, Turkey; [Tiber] Pınar Mega, Department of Biophysics, Marmara Üniversitesi Tip Fakültesi, Istanbul, Turkey; [Orun] Oya, Department of Biophysics, Marmara Üniversitesi Tip Fakültesi, Istanbul, Turkey; [Küçükgüzel] Sükriye Güniz, Department of Pharmaceutical Chemistry, Fenerbahçe University, Istanbul, Turkey en_US
dc.description.abstract This study focused on the synthesis of novel nimesulide semicarbazone derivatives and the evaluation of their cytotoxic potential against luminal-A (MCF-7) and triple-negative (MDA-MB-231) breast cancer cell lines. Additionally, their effects on mitochondrial membrane potential (MMP), apoptosis, and mitogen-activated protein kinase (MAPK) pathway modulation were investigated. Breast cancer remains the most prevalent malignancy among women, with luminal-A and triple-negative subtypes posing significant therapeutic challenges due to drug resistance and the lack of effective targeted treatments. The MAPK pathway plays a crucial role in breast cancer progression, making its inhibition a promising therapeutic approach. Non-steroidal anti-inflammatory drugs (NSAIDs), particularly nimesulide, have demonstrated anticancer potential beyond their well-established anti-inflammatory properties. Accordingly, the semicarbazone moiety was incorporated into the molecular scaffold to enhance the antiproliferative efficacy of nimesulide derivatives, as it has been reported to exhibit cytotoxic and apoptosis-inducing effects across various cancer cell lines. A series of nimesulide semicarbazone derivatives (5a–m) were synthesized through multi-step reactions and characterized using elemental analysis, FT-IR, 1H NMR, 13C NMR and Mass spectroscopy (5e). In silico studies were performed to predict their binding affinities to MAPK12. The cytotoxic effects of the synthesized compounds were assessed by determining IC<inf>50</inf> values in MCF-7 and MDA-MB-231 cell lines (CCK8 test). Compounds exhibiting strong cytotoxic activity were further examined for their impact on MMP depolarization (JC-1 assay), apoptosis induction (Annexin V-FITC/PI staining), and MAPK pathway modulation (Western blotting of p-ERK and ERK protein). Molecular docking results indicated that the synthesized compounds exhibited favorable interactions with MAPK12, with compound 5e showing one of the highest binding affinity (−9.29 kcal/mol, Ki = 0.154 μM). Cytotoxicity assays revealed that compound 5e had the lowest IC<inf>50</inf> values (11.77 ± 0.26 μM in MCF-7; 20.72 ± 0.25 μM in MDA-MB-231), demonstrating significantly higher cytotoxicity than nimesulide. JC-1 assays confirmed that compound 5e induced MMP depolarization at higher concentrations, suggesting apoptosis activation. Flow cytometry analysis further validated a substantial increase in apoptotic cell populations following treatment with compound 5e. Western blot results showed a dose-dependent decrease in p-ERK levels in both MCF-7 and MDA-MB-231 cells, confirming MAPK pathway inhibition. These findings support that nimesulide-based semicarbazones, particularly compound 5e, exhibit potent antiproliferative and pro-apoptotic activity via MAPK pathway modulation, offering a promising avenue for the development of targeted breast cancer therapies. © 2025 Elsevier B.V., All rights reserved. en_US
dc.identifier.doi 10.1016/j.bioorg.2025.108850
dc.identifier.issn 0045-2068
dc.identifier.issn 1090-2120
dc.identifier.pmid 40780124
dc.identifier.scopus 2-s2.0-105012445274
dc.identifier.scopusquality Q1
dc.identifier.uri https://doi.org/10.1016/j.bioorg.2025.108850
dc.identifier.uri https://hdl.handle.net/20.500.14627/1172
dc.identifier.volume 164 en_US
dc.identifier.wosquality Q1
dc.language.iso en en_US
dc.publisher Academic Press Inc. en_US
dc.relation.ispartof Bioorganic Chemistry en_US
dc.relation.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı en_US
dc.rights info:eu-repo/semantics/closedAccess en_US
dc.subject Apoptosis en_US
dc.subject Breast Cancer en_US
dc.subject MAPK en_US
dc.subject Nimesulide en_US
dc.subject Semicarbazone en_US
dc.subject Lipocortin 5 en_US
dc.subject Mitogen Activated Protein Kinase en_US
dc.subject Nimesulide en_US
dc.subject 2 (2 Chloro 6 Fluorobenzylidene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (2,4,6 Trimethylbenzylidene) N [4 (Methylsulfonamido) 3 Henoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (2,6 Dichlorobenzylidene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (2,6 Difluorobenzylidene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (4 Bromobenzylidene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (4 Chlorobenzylidene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (4 Fluorobenzylidene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (4 Hydroxy 3 Methoxybenzylidene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (4 Methylbenzylidene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (4 Nitrobenzylidene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 (Pyridine 4 Ylmethylene) N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 Benzylidene N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject 2 [4 (Trifluoromethyl)Benzylidene] N [4 (Methylsulfonamido) 3 Phenoxyphenyl]Hydrazine 1 Carboxamide en_US
dc.subject Lipocortin 5 en_US
dc.subject Mitogen Activated Protein Kinase en_US
dc.subject Molecular Scaffold en_US
dc.subject Nimesulide en_US
dc.subject Semicarbazone Derivative en_US
dc.subject Unclassified Drug en_US
dc.subject Antineoplastic Activity en_US
dc.subject Apoptosis en_US
dc.subject Article en_US
dc.subject Binding Affinity en_US
dc.subject Breast Cancer en_US
dc.subject Breast Cancer Cell Line en_US
dc.subject Cancer Growth en_US
dc.subject Cancer Inhibition en_US
dc.subject Carbon Nuclear Magnetic Resonance en_US
dc.subject Cell Population en_US
dc.subject Computer Model en_US
dc.subject Cytotoxicity en_US
dc.subject Cytotoxicity Assay en_US
dc.subject Depolarization en_US
dc.subject Elemental Analysis en_US
dc.subject Flow Cytometry en_US
dc.subject Fourier Transform Infrared Spectroscopy en_US
dc.subject Human en_US
dc.subject Human Cell en_US
dc.subject IC50 en_US
dc.subject MCF-7 Cell Line en_US
dc.subject MDA-MB-231 Cell Line en_US
dc.subject Mitochondrial Membrane Potential en_US
dc.subject Molecular Docking en_US
dc.subject Necrosis Rate en_US
dc.subject Proapoptotic Activity en_US
dc.subject Proton Nuclear Magnetic Resonance en_US
dc.subject Western Blotting en_US
dc.title Investigation of Novel Nimesulide Derivatives Against Breast Cancer en_US
dc.type Article en_US
dspace.entity.type Publication

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