Mo_2019_Bioorg.Chem_93_103310

Reference

Title : Design, synthesis, biological evaluation, and molecular modeling studies of quinoline-ferulic acid hybrids as cholinesterase inhibitors - Mo_2019_Bioorg.Chem_93_103310
Author(s) : Mo J , Yang H , Chen T , Li Q , Lin H , Feng F , Liu W , Qu W , Guo Q , Chi H , Chen Y , Sun H
Ref : Bioorg Chem , 93 :103310 , 2019
Abstract :

A series of quinoline-ferulic acid hybrids has been designed, synthesized, and evaluated as cholinesterase inhibitors. Most of the compounds showed good inhibitory activities toward both acetylcholinesterase (AChE) and butyrylcholinesterase (BChE). Among them, 10f was found to be the most potent inhibitor against AChE (IC50=0.62+/-0.17mum), and 14 was the most potent inhibitor against BChE (IC50=0.10+/-0.01mum). Representative compounds, such as 10f and 12g, act in a competitive manner when they inhibit AChE or BChE. Molecular docking and dynamic simulation revealed that the synthesized compounds bind to the target by simultaneously interacting with the catalytic active site (CAS) and the peripheral anionic site (PAS) of both AChE and BChE. The U-shaped confirmation was preferred when 12g bound to BChE, which was different from the linear conformation of 10f bound to AChE. Cell-based assays have confirmed the moderate neuroprotective effects of compounds 10f and 12g against H2O2-induced oxidative damage towards PC12 cells. Moreover, the hepatotoxicity of 12g was lower than that of tacrine, indicating its potential safety as an anti-Alzheimer's agent. In summary, we report a new chemotype of multifunctional hybrid, which may be further modified to develop new anti-Alzheimer's agents.

PubMedSearch : Mo_2019_Bioorg.Chem_93_103310
PubMedID: 31586704

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Citations formats

Mo J, Yang H, Chen T, Li Q, Lin H, Feng F, Liu W, Qu W, Guo Q, Chi H, Chen Y, Sun H (2019)
Design, synthesis, biological evaluation, and molecular modeling studies of quinoline-ferulic acid hybrids as cholinesterase inhibitors
Bioorg Chem 93 :103310

Mo J, Yang H, Chen T, Li Q, Lin H, Feng F, Liu W, Qu W, Guo Q, Chi H, Chen Y, Sun H (2019)
Bioorg Chem 93 :103310