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Physicochemical Properties Govern the Activity of Potent Antiviral Flavones

[Image: see text] Ladanein (i.e., 5,6,7-trihydroxylated flavone) was demonstrated to act as a powerful virucidal agent toward a broad range of enveloped virus particles. Fe(III) coordination and pH are indeed among the key parameters that might favor both bioactivation of the flavone and consequent...

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Autores principales: Martin-Benlloch, Xavier, Haid, Sibylle, Novodomska, Alexandra, Rominger, Frank, Pietschmann, Thomas, Davioud-Charvet, Elisabeth, Elhabiri, Mourad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6648324/
https://www.ncbi.nlm.nih.gov/pubmed/31459671
http://dx.doi.org/10.1021/acsomega.8b03332
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author Martin-Benlloch, Xavier
Haid, Sibylle
Novodomska, Alexandra
Rominger, Frank
Pietschmann, Thomas
Davioud-Charvet, Elisabeth
Elhabiri, Mourad
author_facet Martin-Benlloch, Xavier
Haid, Sibylle
Novodomska, Alexandra
Rominger, Frank
Pietschmann, Thomas
Davioud-Charvet, Elisabeth
Elhabiri, Mourad
author_sort Martin-Benlloch, Xavier
collection PubMed
description [Image: see text] Ladanein (i.e., 5,6,7-trihydroxylated flavone) was demonstrated to act as a powerful virucidal agent toward a broad range of enveloped virus particles. Fe(III) coordination and pH are indeed among the key parameters that might favor both bioactivation of the flavone and consequent host cell entry inhibition. In this present work, the impact of fluorinated groups on the physicochemical and antiviral properties of the flavone was investigated, thus allowing a deeper understanding of the antiviral mode of action. The improved synthesis of ladanein allowed accessing a broad range of analogues, some of them being significantly more active than the former ladanein lead compound. We first determined the acido-basic properties of this homogenous series of compounds and then investigated their electrochemical behavior. Fe(III) coordination properties (stability, spectral behavior, and kinetics) of ladanein and its analogues were then examined (quasiphysiological conditions) and provided key information of their stability and reactivity. Using the determined physicochemical parameters, the critical impact of the iron complexation and medium acidity was confirmed on hepatitis C virus (HCV) particles (pre)treated with ladanein. Finally, a preliminary structure–HCV entry inhibition relationship study evidenced the superior antiviral activity of the ladanein analogues bearing an electron-withdrawing group in para position (FCF(3) > FOCF(3) > FFCF(3) > FF > FOMe) on the B cycle in comparison with the parent ladanein itself.
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spelling pubmed-66483242019-08-27 Physicochemical Properties Govern the Activity of Potent Antiviral Flavones Martin-Benlloch, Xavier Haid, Sibylle Novodomska, Alexandra Rominger, Frank Pietschmann, Thomas Davioud-Charvet, Elisabeth Elhabiri, Mourad ACS Omega [Image: see text] Ladanein (i.e., 5,6,7-trihydroxylated flavone) was demonstrated to act as a powerful virucidal agent toward a broad range of enveloped virus particles. Fe(III) coordination and pH are indeed among the key parameters that might favor both bioactivation of the flavone and consequent host cell entry inhibition. In this present work, the impact of fluorinated groups on the physicochemical and antiviral properties of the flavone was investigated, thus allowing a deeper understanding of the antiviral mode of action. The improved synthesis of ladanein allowed accessing a broad range of analogues, some of them being significantly more active than the former ladanein lead compound. We first determined the acido-basic properties of this homogenous series of compounds and then investigated their electrochemical behavior. Fe(III) coordination properties (stability, spectral behavior, and kinetics) of ladanein and its analogues were then examined (quasiphysiological conditions) and provided key information of their stability and reactivity. Using the determined physicochemical parameters, the critical impact of the iron complexation and medium acidity was confirmed on hepatitis C virus (HCV) particles (pre)treated with ladanein. Finally, a preliminary structure–HCV entry inhibition relationship study evidenced the superior antiviral activity of the ladanein analogues bearing an electron-withdrawing group in para position (FCF(3) > FOCF(3) > FFCF(3) > FF > FOMe) on the B cycle in comparison with the parent ladanein itself. American Chemical Society 2019-03-05 /pmc/articles/PMC6648324/ /pubmed/31459671 http://dx.doi.org/10.1021/acsomega.8b03332 Text en Copyright © 2019 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Martin-Benlloch, Xavier
Haid, Sibylle
Novodomska, Alexandra
Rominger, Frank
Pietschmann, Thomas
Davioud-Charvet, Elisabeth
Elhabiri, Mourad
Physicochemical Properties Govern the Activity of Potent Antiviral Flavones
title Physicochemical Properties Govern the Activity of Potent Antiviral Flavones
title_full Physicochemical Properties Govern the Activity of Potent Antiviral Flavones
title_fullStr Physicochemical Properties Govern the Activity of Potent Antiviral Flavones
title_full_unstemmed Physicochemical Properties Govern the Activity of Potent Antiviral Flavones
title_short Physicochemical Properties Govern the Activity of Potent Antiviral Flavones
title_sort physicochemical properties govern the activity of potent antiviral flavones
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6648324/
https://www.ncbi.nlm.nih.gov/pubmed/31459671
http://dx.doi.org/10.1021/acsomega.8b03332
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