Guan_2021_Bioorg.Med.Chem.Lett__128306

Reference

Title : Design, synthesis, and cholinesterase inhibition assay of liquiritigenin derivatives as anti-Alzheimer's activity - Guan_2021_Bioorg.Med.Chem.Lett__128306
Author(s) : Guan L , Peng D , Zhang L , Jia J , Jiang H
Ref : Bioorganic & Medicinal Chemistry Lett , :128306 , 2021
Abstract :

The marine environment is a rich resource for discovering functional materials, and seaweed is recognized for its potential use in biology and medicine. Liquiritigenin has been isolated and identified from Sargassum pallidum. To find new anti-Alzheimer's activity, we designed and synthesized thirty-two 7-prenyloxy-2,3-dihydroflavanone derivatives (3a-3p) and 5-hydroxy-7-prenyloxy-2,3-dihydro- flavanone derivatives (4a-4p) as cholinesterases inhibitors based on liquiritigenin as the lead compound. Inhibition screening against acetylcholinesterase (AChE) and butyrylcholinesterase (BuChE) indicated that all synthesized compounds possessed potent AChE inhibitory activity and moderated to weak BuChE inhibitory activity in vitro. Kinetic studies demonstrated that compound 4o inhibited AChE via a dual binding site ability. In addition, all compounds displayed the radical scavenging effects. Finally, the molecular docking simulation of 4o in AChE active site displayed good agreement with the obtained the pharmacological results.

PubMedSearch : Guan_2021_Bioorg.Med.Chem.Lett__128306
PubMedID: 34371131

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Citations formats

Guan L, Peng D, Zhang L, Jia J, Jiang H (2021)
Design, synthesis, and cholinesterase inhibition assay of liquiritigenin derivatives as anti-Alzheimer's activity
Bioorganic & Medicinal Chemistry Lett :128306

Guan L, Peng D, Zhang L, Jia J, Jiang H (2021)
Bioorganic & Medicinal Chemistry Lett :128306