Almansour_2019_Bioorg.Med.Chem.Lett__126789

Reference

Title : Design, synthesis and cholinesterase inhibitory activity of novel spiropyrrolidine tethered imidazole heterocyclic hybrids - Almansour_2019_Bioorg.Med.Chem.Lett__126789
Author(s) : Almansour AI , Arumugam N , Kumar RS , Kotresha D , Manohar TS , Venketesh S
Ref : Bioorganic & Medicinal Chemistry Lett , :126789 , 2019
Abstract :

A small library of structurally fascinating spiropyrrolidine tethered imidazole heterocylic hybrids has been synthesized regioselectively in good yields employing [bmim]Br mediated 1,3-diplar cycloaddition strategy. The new class of azomethine ylide generated in situ from l-histidine and 11H-indeno[1,2-b]quinoxalin-11-one reacts with various substituted beta-nitrostyrenes affording the spiropyrrolidine tethered imidazole heterocylic hybrids. Compounds thus synthesized were assessed for their in vitro cholinesterase (ChEs) inhibitory activities, among them compounds possessing 4-methyl and 4-methoxy substituents on the aryl ring showed potent activities with IC50 values of 2.02+/-0.05 and 2.05+/-0.06muM against AChE and 12.40+/-0.14 and 11.45+/-0.28muM against BChE enzyme, respectively. In addition, the most active compounds were performed for their molecular docking simulation and the results revealed interesting binding templates to the active site channel of cholinesterase enzymes.

PubMedSearch : Almansour_2019_Bioorg.Med.Chem.Lett__126789
PubMedID: 31753696

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Citations formats

Almansour AI, Arumugam N, Kumar RS, Kotresha D, Manohar TS, Venketesh S (2019)
Design, synthesis and cholinesterase inhibitory activity of novel spiropyrrolidine tethered imidazole heterocyclic hybrids
Bioorganic & Medicinal Chemistry Lett :126789

Almansour AI, Arumugam N, Kumar RS, Kotresha D, Manohar TS, Venketesh S (2019)
Bioorganic & Medicinal Chemistry Lett :126789