4.7 Article

Synthesis and evaluation of a novel class of ethacrynic acid derivatives containing triazoles as potent anticancer agents

期刊

BIOORGANIC CHEMISTRY
卷 115, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bioorg.2021.105293

关键词

Ethacrynic acid; Cytotoxic activity; Cytotoxic Triazole; Anticancer agents

资金

  1. Euromed University of Fes
  2. Campus France
  3. Orleans University
  4. CNRST
  5. CNRS
  6. Labex SynOrg [ANR-11-LABX-0029]
  7. Labex IRON [ANR-11-LABX0018-01]
  8. Region Centre Val de Loire
  9. FEDER (TECHSAB, CHEMBIO)

向作者/读者索取更多资源

A novel class of ethacrynic acid derivatives containing triazole moieties were designed, synthesized and evaluated as new anticancer agents. Compound 3c exhibited very good antitumor activities with high safety index and selectivity against various cancer cell lines. Both compounds induced mitochondrial dysfunctions causing caspase-induced apoptosis in HCT116 cells.
For unmet clinical needs, a novel class of ethacrynic acid (EA) derivatives containing triazole moieties (3a-i and 8) were designed, synthesized and evaluated as new anticancer agents. The in vitro anti-proliferative activities were assessed first on HL60 cell line and in a second stage, the two selected compounds 3a and 3c were tested on a panel of human cancer cell lines (A549, MCF7, PC3, U87-MG, SKOV3 and HCT116) and on a normal cell line (MCR5). Compound 3c exhibited very good antitumor activities with IC50 values of 20.2, 56.5 and 76.8 nM against A549, PC3 and U87-MG cell lines respectively, which is 2.8- and 1.3-fold more active than doxorubicin on A549 and U87-MG cancer cells, respectively. In addition, compound 3c displays a very good safety index (SI) of 82 fold for A549. Compound 3a showed also good IC50 values of 50 nM on both A549 and PC3 cells and lower selectivity compared to 3c for A549 and PC3 vs. MCR5 with SI of 33 and 18 fold, respectively. The measurement of mitochondrial membrane potential on HCT116 cells after treatments by either 3a or 3c showed that both compounds induced mitochondrial dysfunctions causing thus caspase-induced apoptosis.

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