Castro_2018_Bioorg.Chem_79_301

Reference

Title : Oxidation at C-16 enhances butyrylcholinesterase inhibition in lupane triterpenoids - Castro_2018_Bioorg.Chem_79_301
Author(s) : Castro MJ , Richmond V , Faraoni MB , Murray AP
Ref : Bioorg Chem , 79 :301 , 2018
Abstract :

A set of triterpenoids with different grades of oxidation in the lupane skeleton were prepared and evaluated as cholinesterase inhibitors. Allylic oxidation with selenium oxide and Jones's oxidation were employed to obtain mono-, di- and tri-oxolupanes, starting from calenduladiol (1) and lupeol (3). All the derivatives showed a selective inhibition of butyrylcholinesterase over acetylcholinesterase (BChE vs. AChE). A kinetic study proved that compounds 2 and 9, the more potent inhibitors of the series, act as competitive inhibitors. Molecular modeling was used to understand their interaction with BChE, the role of carbonyl at C-16 and the selectivity towards this enzyme over AChE. These results indicate that oxidation at C-16 of the lupane skeleton is a key transformation in order to improve the cholinesterase inhibition of these compounds.

PubMedSearch : Castro_2018_Bioorg.Chem_79_301
PubMedID: 29793143

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Citations formats

Castro MJ, Richmond V, Faraoni MB, Murray AP (2018)
Oxidation at C-16 enhances butyrylcholinesterase inhibition in lupane triterpenoids
Bioorg Chem 79 :301

Castro MJ, Richmond V, Faraoni MB, Murray AP (2018)
Bioorg Chem 79 :301