Design, synthesis and biological evaluation of novel bischalcone derivatives as potential anticancer agents

[Display omitted] •A series of bischalcone derivatives were synthesized by Claisen-Schmidt reaction.•In vitro cell culture cytotoxicity assays were performed on two different cancer cell lines.•Apoptotic status of cells was analyzed using flow cytometry.•Cell-cycle analysis was performed.•Molecular...

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Veröffentlicht in:Bioorganic chemistry 2021-06, Vol.111, p.104882-104882, Article 104882
Hauptverfasser: Burmaoglu, Serdar, Gobek, Arzu, Aydin, Busra Ozturk, Yurtoglu, Emine, Aydin, Busra Nur, Ozkat, Gozde Yalcin, Hepokur, Ceylan, Ozek, Nihal Simsek, Aysin, Ferhunde, Altundas, Ramazan, Algul, Oztekin
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Sprache:eng
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Zusammenfassung:[Display omitted] •A series of bischalcone derivatives were synthesized by Claisen-Schmidt reaction.•In vitro cell culture cytotoxicity assays were performed on two different cancer cell lines.•Apoptotic status of cells was analyzed using flow cytometry.•Cell-cycle analysis was performed.•Molecular docking analysis was performed. Building on our previous work that discovered chalcone as a promising pharmacophore for anticancer activity, we have various other chalcone derivatives and have synthesized a series of novel bischalcone to explore their anticancer activity. Among all tested compounds, compounds 6a, 6b, and 6c showed the highest antiproliferative activity against A-549 cancer cell lines with the average IC50 values of 4.18, 4.52, and 5.05 µM, respectively. Moreover, compound 6c showed high antiproliferative activity against the Caco-2 cell line; thus, it was 2- and 4-fold more active than the reference compounds, i.e., methotrexate and capecitabine. Compound 6a also induced cell-cycle arrest in the S phase, whereas compounds 6b and 6c were observed to stop at the G0/G1 phase. Thereafter, we evaluated that compound 6c also had the highest apoptosis/necrosis ratio than other compounds and the standard compound. The anticancer property of the 6c was also supported by molecular docking studies carried out on the EGFR and HER2 receptors. Overall, we expect that these compounds can be further developed for the potential treatment of lung cancer.
ISSN:0045-2068
1090-2120
DOI:10.1016/j.bioorg.2021.104882