4.5 Article

Unraveling the Alkaline Phosphatase Inhibition, Anticancer, and Antileishmanial Potential of Coumarin-Triazolothiadiazine Hybrids: Design, Synthesis, and Molecular Docking Analysis

Journal

ARCHIV DER PHARMAZIE
Volume 349, Issue 7, Pages 553-565

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/ardp.201500392

Keywords

Coumarin; Cytotoxicity; Heterocycles; Leishmaniasis; Triazolothiadiazine

Funding

  1. Higher Education Commission of Pakistan
  2. Department of Energy, United States of America [DE-SC0001717]

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A series of new coumarin-triazolothiadiazine hybrid compounds (5a-j) was designed and synthesized by using the molecular hybridization concept. The cyclocondensation reaction involves the coumarinyl 4-amino-1,2,4-triazole and a range of bromo-acetophenones, delivering the desired products in good yields. The structures of the synthesized compounds were established on the basis of spectro-analytical data. The prepared compounds were evaluated against alkaline phosphatase (ALP) where compound 5j incorporating bis-coumarinyl motifs at the 3- and 6-positions of the heteroaromatic core turned out to be a potent inhibitor with an IC50 value of 1.15 +/- 1.0 mu M. The synthesized compounds were also tested against Leishmania major and 5h was the lead member with an IC50 value of 0.89 +/- 0.08 mu M. Anticancer activity was also determined using kidney fibroblast (BHK-21) and lung carcinoma (H-157) cancer cell lines. Compound 5i showed highest cytotoxic potential against H-157 cells with an IC50 value of 1.01 +/- 0.12 mu M, which is an improved inhibition compared to the standards (vincristine and cisplatin) used in this assay. Molecular docking studies were carried out on the synthesized library of coumarin-triazolothiadiazine hybrids against ALP. Almost all of the compounds showed strong interactions with the key residues of the active site of the receptor. In case of compounds 5a-c, 5h, and 5j, docking results positively complemented the experimental screening. These results provided substantial evidence for the further development of these compounds as potent inhibitors of ALP.

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