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Design and synthesis of novel substituted indole-acrylamide derivatives and evaluation of their anti-cancer activity as potential tubulin-targeting agents

  • Mohammed Hawash
  • , Deniz Cansen Kahraman
  • , Abdurrahman Olgac
  • , Sezen Guntekin Ergun
  • , Ernest Hamel
  • , Rengul Cetin-Atalay
  • , Sultan Nacak Baytas
  • Gazi University
  • An-Najah National University
  • Middle East Technical University
  • National Institutes of Health (NIH) - USA
  • The University of Chicago

Research output: Contribution to journalArticlepeer-review

Abstract

Novel compounds containing polar and nonpolar substitutions on the prop-2-en-1-on linker of the trans-indol-3-ylacrylamide scaffold were designed by modeling within the colchicine site of tubulin and then synthesized to determine the role of such substitutions on tubulin polymerization. We first determined the in vitro antiproliferation activities of the compounds against cancer cell lines with a particular focus on hepatocellular carcinoma. The results indicated that five of the compounds showed moderate antitumor activities. When the tubulin polymerization inhibitory effect of these compounds was evaluated, compound 13 was determined to be a tubulin polymerization inhibitor. Furthermore, cell cycle analysis for compound 13 resulted in G2/M-phase arrest in Huh7 cells. The results indicated that polar substitutions on the indole acrylamide scaffold enhance potency against tubulin polymerization. However, the substitution-related bioactivity shifting was not observed on the cancer cell lines since the inhibition mechanisms of the compounds may vary. (C) 2022 Elsevier B.V. All rights reserved.
Original languageEnglish
Article number132345
Number of pages12
JournalJournal of Molecular Structure
Volume1254
Early online dateJan 2022
DOIs
Publication statusPublished - 15 Apr 2022

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Anticancer activity
  • Cell cycle arrest
  • Colchicine binding
  • Indole
  • Molecular docking
  • Synthesis
  • Tubulin polymerization

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