Kanhed_2015_Bioorg.Chem_61_7

Reference

Title : Discovery of isoalloxazine derivatives as a new class of potential anti-Alzheimer agents and their synthesis - Kanhed_2015_Bioorg.Chem_61_7
Author(s) : Kanhed AM , Sinha A , Machhi J , Tripathi A , Parikh ZS , Pillai PP , Giridhar R , Yadav MR
Ref : Bioorg Chem , 61 :7 , 2015
Abstract :

This article describes discovery of a novel and new class of cholinesterase inhibitors as potential therapeutics for Alzheimer's disease. A series of novel isoalloxazine derivatives were synthesized and biologically evaluated for their potential inhibitory outcome for both acetylcholinesterase (AChE) and butyrylcholinesterase (BuChE). These compounds exhibited high activity against both the enzymes AChE as well as BuChE. Of the synthesized compounds, the most potent isoalloxazine derivatives (7m and 7q) showed IC50 values of 4.72muM and 5.22muM respectively against AChE; and, 6.98muM and 5.29muM respectively against BuChE. These two compounds were further evaluated for their anti-aggregatory activity for beta-amyloid (Abeta) in presence and absence of AChE by performing Thioflavin-T (ThT) assay and Congo red (CR) binding assay. In order to evaluate cytotoxic profile of these two potential compounds, cell viability assay of SH-SY5Y human neuroblastoma cells was performed. Further, to understand the binding behavior of these two compounds with AChE and BuChE enzymes, docking studies have been reported.

PubMedSearch : Kanhed_2015_Bioorg.Chem_61_7
PubMedID: 26042530

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Citations formats

Kanhed AM, Sinha A, Machhi J, Tripathi A, Parikh ZS, Pillai PP, Giridhar R, Yadav MR (2015)
Discovery of isoalloxazine derivatives as a new class of potential anti-Alzheimer agents and their synthesis
Bioorg Chem 61 :7

Kanhed AM, Sinha A, Machhi J, Tripathi A, Parikh ZS, Pillai PP, Giridhar R, Yadav MR (2015)
Bioorg Chem 61 :7