Semicarbazides Carrying Indole Core: Synthesis, Cytotoxicity Evaluation against Human Breast Cancer Cell Lines, and Molecular Modeling Studies

Author:

Çelik Beyza12,Buran Uğur Sümeyye1,Baran Münevver1,Gündüz Miyase Gözde3ORCID,Keskin Selbi4,Önder Gözde Özge56,Bitgen Nazmiye67,Kaya Serdal89,Doğan Şengül Dilem1ORCID

Affiliation:

1. Department of Basic Sciences Faculty of Pharmacy Erciyes University 38039 Kayseri Turkey

2. Department of Biochemistry Faculty of Pharmacy Erciyes University 38039 Kayseri Turkey

3. Department of Pharmaceutical Chemistry Faculty of Pharmacy Hacettepe University, Sıhhiye 06100 Ankara Turkey

4. Department of Chemistry Faculty of Arts and Sciences Giresun University Giresun 28200 Turkey

5. Erciyes University Faculty of Medicine Department of Histology and Embryology Kayseri Turkey

6. Erciyes University Genome and Stem Cell Center Kayseri Turkey

7. Erciyes University Faculty of Medicine Department of Medical Biology Kayseri Turkey

8. Department of Aeronautical Engineering Faculty of Aviation and Space Sciences Necmettin Erbakan University 42090 Konya Turkey

9. BITAM-Science and Technology Research and Application Center Necmettin Erbakan University 42090 Konya Turkey

Abstract

AbstractIn this article, we report the synthesis and cytotoxicity evaluation of novel indole‐carrying semicarbazide derivatives (IS1IS15). The target molecules were obtained by the reaction of aryl/alkyl isocyanates with 1H‐indole‐2‐carbohydrazide that was in‐house synthesized from 1H‐indole‐2‐carboxylic acid. Following structural characterization by 1H‐NMR, 13C‐NMR, and HR‐MS, IS1IS15 were investigated for their cytotoxic activity against human breast cancer cell lines, MCF‐7 and MDA‐MB‐231. According to the data obtained from the MTT assay, phenyl ring with a lipophilic group at its para‐position and alkyl moiety were preferential substituents on the indole‐semicarbazide scaffold for antiproliferative activity. The effect of IS12 (N‐(4‐chloro‐3‐(trifluoromethyl)phenyl)‐2‐(1H‐indole‐2‐carbonyl)hydrazine‐1‐carboxamide), the compound that demonstrated remarkable antiproliferative activity on both cell lines, was also evaluated on the apoptotic pathway. Moreover, the calculation of critical descriptors constituting drug‐likeness confirmed the position of the selected compounds in the anticancer drug development process. Finally, molecular docking studies suggested the inhibition of tubulin polymerization as the potential activity mechanism of this class of molecules.

Publisher

Wiley

Subject

Molecular Biology,Molecular Medicine,General Chemistry,Biochemistry,General Medicine,Bioengineering

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