Synthesis, Biological Evaluation and Molecular Docking Studies of Bis-Chalcone Derivatives as Xanthine Oxidase Inhibitors and Anticancer Agents

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Date

2019

Authors

Burmaoğlu, Serdar
Özcan, Şeyda
Balcıoğlu, Sevgi
Gencel, Melis
Noma, Samir Abbas Ali
Eşsiz, Şebnem
Ateş, Burhan
Algül, Öztekin

Journal Title

Journal ISSN

Volume Title

Publisher

Elsevier

Open Access Color

Green Open Access

Yes

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No
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Top 10%
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Top 10%
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Top 1%

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Abstract

In this study, a series of B-ring fluoro substituted bis-chalcone derivatives were synthesized by Claisen-Schmidt condensation reactions and evaluated for their ability to inhibit xanthine oxidase (XO) and growth inhibitory activity against MCF-7 and Caco-2 human cancer cell lines, in vitro. According to the results obtained, the bis-chalcone with fluoro group at the 2 (4b) or 2,5-position (4g) of B-ring were found to be potent inhibitors of the enzyme with IC50 values in the low micromolar range. The effects of these compounds were about 7 fold higher than allopurinol. The binding modes of the bis-chalcone derivatives in the active site of xanthine oxidase were explained using molecular docking calculations. Also, compound 4g and 4h showed in vitro growth inhibitory activity against a panel of two human cancer cell lines 1.9 and 6.8 μM of IC50 values, respectively.

Description

Keywords

Bis-chalcone, Claisen-Schmidt condensation, Cytotoxicity, Inhibition, Synthesis, Xanthine Oxidase, Molecular Structure, Cell Survival, Cytotoxicity, Bis-chalcone, Antineoplastic Agents, Breast Neoplasms, Molecular Docking Simulation, Synthesis, Structure-Activity Relationship, Chalcone, Catalytic Domain, Tumor Cells, Cultured, Humans, Female, Claisen-Schmidt condensation, Enzyme Inhibitors, Inhibition, Cell Proliferation

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Fields of Science

01 natural sciences, 0104 chemical sciences

Citation

WoS Q

Q1

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OpenCitations Citation Count
52

Source

Bioorganic Chemistry

Volume

91

Issue

10/01/19

Start Page

103149

End Page

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Citations

CrossRef : 55

Scopus : 63

PubMed : 15

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Mendeley Readers : 84

SCOPUS™ Citations

63

checked on Feb 04, 2026

Web of Science™ Citations

54

checked on Feb 04, 2026

Page Views

3

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