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How glucosylation triggers physical–chemical properties of curcumin: an experimental and theoretical study
Authors:Rois Benassi  Erika Ferrari  Sandra Lazzari  Francesca Pignedoli  Ferdinando Spagnolo  Monica Saladini
Affiliation:Department of Chemistry, University of Modena and Reggio Emilia, via Campi 183, 41100 Modena, Italy
Abstract:In the present study, we investigate the structures of glucosylated curcumin derivatives with DFT at B3LYP/6‐31G* level. A conformational analysis is performed in order to determine the conformational minimum (GS) and rotational transition state (TS) of curcumin derivatives and then their electronic features are evaluated. HOMO and LUMO frontier orbitals and maps of electron density potential (MEPs) are plotted and compared. In order to correlate their predicted spectroscopic properties with IR, UV–vis and NMR experimental data we extended the theoretical study on electronic properties to different solvents (H2O, MeOH, ACN, DMSO). The main finding is that the curcuminic core maintains the same geometrical and electronic structures in all compounds miming the metal coordination capability showed by curcumin. Therefore, we may confirm that the presence of glucose does not affect the electronic properties of the derivatives. Copyright © 2010 John Wiley & Sons, Ltd.
Keywords:β  ‐keto–  enolic structure  curcumin  DFT  glucosyl‐curcuminoids
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