Singla_2016_Bioorg.Med.Chem_24_4587

Reference

Title : Coumarin derivatives as potential inhibitors of acetylcholinesterase: Synthesis, molecular docking and biological studies - Singla_2016_Bioorg.Med.Chem_24_4587
Author(s) : Singla S , Piplani P
Ref : Bioorganic & Medicinal Chemistry , 24 :4587 , 2016
Abstract :

A series of novel hybrids has been synthesized by linking coumarin moiety through an appropriate spacer to various substituted heterocyclic amines and evaluated as dual binding site acetylcholinesterase inhibitors for the treatment of cognitive dysfunction caused by increased hydrolysis of acetylcholine and scopolamine induced oxidative stress. Anti-amnesic activity of the compounds was evaluated using Morris water maze model at a dose of 1mg/kg with reference to the standard, donepezil. Biochemical estimation of oxidative stress markers (lipid peroxidation, superoxide dismutase, and plasma nitrite) was carried out to assess the antioxidant potential of the synthesized molecules. Among all the synthesized compounds (15a-i, 16a-d, 17a-b), compound 15a [4-[3-(4-phenylpiperazin-1-yl)propoxy]-2H-chromen-2-one] displayed significant antiamnesic activity, AChE inhibitory activity (IC50=2.42muM) and antioxidant activity in comparison to donepezil (IC50=1.82muM). Molecular docking study of 15a indicated that it interacts with all the crucial amino acids present at the CAS, mid-gorge and PAS of TcAChE resulting in increased inhibition of AChE enzyme.

PubMedSearch : Singla_2016_Bioorg.Med.Chem_24_4587
PubMedID: 27519464

Related information

Citations formats

Singla S, Piplani P (2016)
Coumarin derivatives as potential inhibitors of acetylcholinesterase: Synthesis, molecular docking and biological studies
Bioorganic & Medicinal Chemistry 24 :4587

Singla S, Piplani P (2016)
Bioorganic & Medicinal Chemistry 24 :4587