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Asymmetric Phenyl Substitution : An Effective Strategy to Enhance the Photosensitizing Potential of Curcuminoids

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dc.contributor.author Vesco, Guglielmo
dc.contributor.author Brambati, Martino
dc.contributor.author Scapinello, Luca
dc.contributor.author Penoni, Andrea
dc.contributor.author Mella, Massimo
dc.contributor.author Masson, Màr
dc.contributor.author Gaware, Vivek
dc.contributor.author Maspero, Angelo
dc.contributor.author Nardo, Luca
dc.date.accessioned 2023-02-11T01:07:54Z
dc.date.available 2023-02-11T01:07:54Z
dc.date.issued 2022-07-09
dc.identifier.citation Vesco , G , Brambati , M , Scapinello , L , Penoni , A , Mella , M , Masson , M , Gaware , V , Maspero , A & Nardo , L 2022 , ' Asymmetric Phenyl Substitution : An Effective Strategy to Enhance the Photosensitizing Potential of Curcuminoids ' , Pharmaceuticals , vol. 15 , no. 7 , 843 . https://doi.org/10.3390/ph15070843
dc.identifier.issn 1424-8247
dc.identifier.other 65514443
dc.identifier.other 65f1e964-6de1-4277-a403-cff0a44db4ee
dc.identifier.other 85136291105
dc.identifier.other 35890142
dc.identifier.other unpaywall: 10.3390/ph15070843
dc.identifier.uri https://hdl.handle.net/20.500.11815/3966
dc.description This research received no external funding. Publisher Copyright: © 2022 by the authors.
dc.description.abstract Curcumin has been demonstrated to exhibit photosensitized bactericidal activity. However, the full exploitation of curcumin as a photo-pharmaceutical active principle is hindered by fast deactivation of the excited state through the transfer of the enol proton to the keto oxygen. Introducing an asymmetry in the molecular structure through acting on the phenyl substituents is expected to be a valuable strategy to impair this undesired de-excitation mechanism competing with the therapeutically relevant ones. In this study, two asymmetric curcumin analogs were synthesized and characterized as to their electronic-state transition spectroscopic properties. Fluorescence decay distributions were also reconstructed. Their analysis confirmed the substantial stabilization of the fluorescent state with respect to the parent compound. Nuclear magnetic resonance experiments were performed with the aim of determining the structural features of the keto–enol ring and the strength of the keto–enol hydrogen bond. Electronic structure calculations were also undertaken to elucidate the effects of substitution on the features of the keto–enol semi-aromatic system and the proneness to proton transfer. Finally, their singlet oxygen-generation efficiency was compared to that of curcumin through the 9,10-dimethylanthracene fluorescent assay.
dc.format.extent 4926900
dc.format.extent
dc.language.iso en
dc.relation.ispartofseries Pharmaceuticals; 15(7)
dc.rights info:eu-repo/semantics/openAccess
dc.subject curcuminoid
dc.subject electronic structure calculations
dc.subject excited-state intramolecular proton transfer
dc.subject fluorescence
dc.subject keto–enolic semi-aromatic ring
dc.subject nuclear magnetic resonance
dc.subject photosensitizer
dc.subject singlet oxygen quantum yield
dc.subject UV-Vis absorption spectroscopy
dc.subject Molecular Medicine
dc.subject Pharmaceutical Science
dc.subject Drug Discovery
dc.title Asymmetric Phenyl Substitution : An Effective Strategy to Enhance the Photosensitizing Potential of Curcuminoids
dc.type /dk/atira/pure/researchoutput/researchoutputtypes/contributiontojournal/article
dc.description.version Peer reviewed
dc.identifier.doi 10.3390/ph15070843
dc.relation.url http://www.scopus.com/inward/record.url?scp=85136291105&partnerID=8YFLogxK
dc.contributor.department Faculty of Pharmaceutical Sciences


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