| Literature DB >> 32301032 |
Obaidurahman Abid1,2,3, Syahrul Imran4,5, Muhammad Taha6, Nor Hadiani Ismail1,2, Waqas Jamil7, Syed Muhammad Kashif7, Khalid Mohammed Khan8, Juliana Yusoff1.
Abstract
The β-glucuronidase, a lysosomal enzyme, catalyzes the cleavage of glucuronosyl-O-bonds. Its inhibitors play a significant role in different medicinal therapies as they cause a decrease in carcinogen-induced colonic tumors by reducing the level of toxic substances present in the intestine. Among those inhibitors, bisindole derivatives had displayed promising β-glucuronidase inhibition activity. In the current study, hydrazone derivatives of bisindolymethane (1-30) were synthesized and evaluated for in vitro β-glucuronidase inhibitory activity. Twenty-eight analogs demonstrated better activity (IC50 = 0.50-46.5 µM) than standard D-saccharic acid 1,4-lactone (IC50 = 48.4 ± 1.25 µM). Compounds with hydroxyl group like 6 (0.60 ± 0.01 µM), 20 (1.50 ± 0.10 µM) and 25 (0.50 ± 0.01 µM) exhibited the most potent inhibitory activity, followed by analogs with fluorine 21 (3.50 ± 0.10 µM) and chlorine 23 (8.20 ± 0.20 µM) substituents. The presence of hydroxyl group at the aromatic side chain was observed as the main contributing factor in the inhibitory potential. From the docking studies, it was predicted that the active compounds can fit properly in the binding groove of the β-glucuronidase and displayed significant binding interactions with essential residues.Entities:
Keywords: Bisindole; Hydrazone; Molecular docking; Synthesis; β-Glucuronidase inhibition
Year: 2020 PMID: 32301032 DOI: 10.1007/s11030-020-10084-4
Source DB: PubMed Journal: Mol Divers ISSN: 1381-1991 Impact factor: 2.943