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Protonated Forms of Naringenin and Naringenin Chalcone: Proteiform Bioactive Species Elucidated by IRMPD Spectroscopy, IMS, CID-MS, and Computational Approaches

[Image: see text] Naringenin (Nar) and its structural isomer, naringenin chalcone (ChNar), are two natural phytophenols with beneficial health effects belonging to the flavonoids family. A direct discrimination and structural characterization of the protonated forms of Nar and ChNar, delivered into...

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Autores principales: Corinti, Davide, Rotari, Lucretia, Crestoni, Maria Elisa, Fornarini, Simonetta, Oomens, Jos, Berden, Giel, Tintaru, Aura, Chiavarino, Barbara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9999425/
https://www.ncbi.nlm.nih.gov/pubmed/36849438
http://dx.doi.org/10.1021/acs.jafc.2c07453
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author Corinti, Davide
Rotari, Lucretia
Crestoni, Maria Elisa
Fornarini, Simonetta
Oomens, Jos
Berden, Giel
Tintaru, Aura
Chiavarino, Barbara
author_facet Corinti, Davide
Rotari, Lucretia
Crestoni, Maria Elisa
Fornarini, Simonetta
Oomens, Jos
Berden, Giel
Tintaru, Aura
Chiavarino, Barbara
author_sort Corinti, Davide
collection PubMed
description [Image: see text] Naringenin (Nar) and its structural isomer, naringenin chalcone (ChNar), are two natural phytophenols with beneficial health effects belonging to the flavonoids family. A direct discrimination and structural characterization of the protonated forms of Nar and ChNar, delivered into the gas phase by electrospray ionization (ESI), was performed by mass spectrometry-based methods. In this study, we exploit a combination of electrospray ionization coupled to (high-resolution) mass spectrometry (HR-MS), collision-induced dissociation (CID) measurements, IR multiple-photon dissociation (IRMPD) action spectroscopy, density functional theory (DFT) calculations, and ion mobility-mass spectrometry (IMS). While IMS and variable collision-energy CID experiments hardly differentiate the two isomers, IRMPD spectroscopy appears to be an efficient method to distinguish naringenin from its related chalcone. In particular, the spectral range between 1400 and 1700 cm(–1) is highly specific in discriminating between the two protonated isomers. Selected vibrational signatures in the IRMPD spectra have allowed us to identify the nature of the metabolite present in methanolic extracts of commercial tomatoes and grapefruits. Furthermore, comparisons between experimental IRMPD and calculated IR spectra have clarified the geometries adopted by the two protonated isomers, allowing a conformational analysis of the probed species.
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spelling pubmed-99994252023-03-11 Protonated Forms of Naringenin and Naringenin Chalcone: Proteiform Bioactive Species Elucidated by IRMPD Spectroscopy, IMS, CID-MS, and Computational Approaches Corinti, Davide Rotari, Lucretia Crestoni, Maria Elisa Fornarini, Simonetta Oomens, Jos Berden, Giel Tintaru, Aura Chiavarino, Barbara J Agric Food Chem [Image: see text] Naringenin (Nar) and its structural isomer, naringenin chalcone (ChNar), are two natural phytophenols with beneficial health effects belonging to the flavonoids family. A direct discrimination and structural characterization of the protonated forms of Nar and ChNar, delivered into the gas phase by electrospray ionization (ESI), was performed by mass spectrometry-based methods. In this study, we exploit a combination of electrospray ionization coupled to (high-resolution) mass spectrometry (HR-MS), collision-induced dissociation (CID) measurements, IR multiple-photon dissociation (IRMPD) action spectroscopy, density functional theory (DFT) calculations, and ion mobility-mass spectrometry (IMS). While IMS and variable collision-energy CID experiments hardly differentiate the two isomers, IRMPD spectroscopy appears to be an efficient method to distinguish naringenin from its related chalcone. In particular, the spectral range between 1400 and 1700 cm(–1) is highly specific in discriminating between the two protonated isomers. Selected vibrational signatures in the IRMPD spectra have allowed us to identify the nature of the metabolite present in methanolic extracts of commercial tomatoes and grapefruits. Furthermore, comparisons between experimental IRMPD and calculated IR spectra have clarified the geometries adopted by the two protonated isomers, allowing a conformational analysis of the probed species. American Chemical Society 2023-02-27 /pmc/articles/PMC9999425/ /pubmed/36849438 http://dx.doi.org/10.1021/acs.jafc.2c07453 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Corinti, Davide
Rotari, Lucretia
Crestoni, Maria Elisa
Fornarini, Simonetta
Oomens, Jos
Berden, Giel
Tintaru, Aura
Chiavarino, Barbara
Protonated Forms of Naringenin and Naringenin Chalcone: Proteiform Bioactive Species Elucidated by IRMPD Spectroscopy, IMS, CID-MS, and Computational Approaches
title Protonated Forms of Naringenin and Naringenin Chalcone: Proteiform Bioactive Species Elucidated by IRMPD Spectroscopy, IMS, CID-MS, and Computational Approaches
title_full Protonated Forms of Naringenin and Naringenin Chalcone: Proteiform Bioactive Species Elucidated by IRMPD Spectroscopy, IMS, CID-MS, and Computational Approaches
title_fullStr Protonated Forms of Naringenin and Naringenin Chalcone: Proteiform Bioactive Species Elucidated by IRMPD Spectroscopy, IMS, CID-MS, and Computational Approaches
title_full_unstemmed Protonated Forms of Naringenin and Naringenin Chalcone: Proteiform Bioactive Species Elucidated by IRMPD Spectroscopy, IMS, CID-MS, and Computational Approaches
title_short Protonated Forms of Naringenin and Naringenin Chalcone: Proteiform Bioactive Species Elucidated by IRMPD Spectroscopy, IMS, CID-MS, and Computational Approaches
title_sort protonated forms of naringenin and naringenin chalcone: proteiform bioactive species elucidated by irmpd spectroscopy, ims, cid-ms, and computational approaches
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9999425/
https://www.ncbi.nlm.nih.gov/pubmed/36849438
http://dx.doi.org/10.1021/acs.jafc.2c07453
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