4.7 Article

Design, synthesis and biological evaluation of novel uracil derivatives bearing 1, 2, 3-triazole moiety as thymidylate synthase (TS) inhibitors and as potential antitumor drugs

Journal

EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY
Volume 171, Issue -, Pages 282-296

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.ejmech.2019.03.047

Keywords

Thymidylate synthase; Uracil derivatives; 1, 2, 3-triazole; Antiproliferative activity; Intrinsic apoptosis

Funding

  1. National Natural Science Foundation of China [81573687]
  2. project of Liaoning distinguished professor, China

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Research on thymidylate synthase inhibitors has been a hot spot for anticancer drug development. Here, based on the structures and pharmacological properties of two types of TS inhibitors, through a molecular assembly principle of drugs design, we designed and synthesized a series of 30 novel uracil derivatives as TS inhibitors. The antiproliferative ability of these compounds was evaluated against four cancer cell lines (A549, OVCAR-3, SGC-7901, and HepG2) by the MIT assay. Most of them showed excellent activities against all the tested cell lines. Furthermore, hTS assay results showed that these compounds have the unique ability to inhibit hTS activity in vitro. Notably, compound 13j exhibited the most potent activity against A549 cells (IC50 = 1.18 mu M) and extremely prominent enzyme inhibition (IC50 = 0.13 mu M), which was superior to the pemetrexed (PTX, IC50 = 3.29 mu M and IC50 = 2.04 mu M). Flow cytometric analysis showed the compound 13j could inhibit A549 cells proliferation by arresting the cell cycle in the G1/S phase, then induced the cell apoptosis. Further western blot analysis showed that compound 13j could down-regulate the cycle checkpoint proteins cyclin D1 and cyclin E to inhibit the cell cycle progression, and then induce intrinsic apoptosis by activating caspase-3, and reducing the ratio of bcl-2/bax. All of these results demonstrated that this new structure has potential drug -making properties and provides new ideas for drug development. (C) 2019 Elsevier Masson SAS. All rights reserved.

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