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Methyl divanillate: redox properties and binding affinity with albumin of an antioxidant and potential NADPH oxidase inhibitor

Vanillic acid is a widely used food additive (flavouring agent, JECFA number: 959) with many reported beneficial biological effects. The same is true for its ester derivative (methyl vanillate, JECFA number: 159). Based on the increasing evidence that diapocynin, the dimer of apocynin (NADPH oxidase...

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Autores principales: de Vasconcelos, Debora Naliati, Lima, Angélica Nakagawa, Philot, Eric Allison, Scott, Ana Lígia, Ferreira Boza, Izabelle Amorim, de Souza, Aguinaldo Robinson, Morgon, Nelson Henrique, Ximenes, Valdecir Farias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065500/
https://www.ncbi.nlm.nih.gov/pubmed/35514705
http://dx.doi.org/10.1039/c9ra02465d
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author de Vasconcelos, Debora Naliati
Lima, Angélica Nakagawa
Philot, Eric Allison
Scott, Ana Lígia
Ferreira Boza, Izabelle Amorim
de Souza, Aguinaldo Robinson
Morgon, Nelson Henrique
Ximenes, Valdecir Farias
author_facet de Vasconcelos, Debora Naliati
Lima, Angélica Nakagawa
Philot, Eric Allison
Scott, Ana Lígia
Ferreira Boza, Izabelle Amorim
de Souza, Aguinaldo Robinson
Morgon, Nelson Henrique
Ximenes, Valdecir Farias
author_sort de Vasconcelos, Debora Naliati
collection PubMed
description Vanillic acid is a widely used food additive (flavouring agent, JECFA number: 959) with many reported beneficial biological effects. The same is true for its ester derivative (methyl vanillate, JECFA number: 159). Based on the increasing evidence that diapocynin, the dimer of apocynin (NADPH oxidase inhibitor), has some improved pharmacological properties compared to its monomer, here the dimer of methyl vanillate (MV), i.e., methyl divanillate (dimer of methyl vanillate, DMV) was synthesized and studied in the context of its redox properties and binding affinity with human serum albumin (HSA). We found that the antioxidant potency of DMV was significantly increased compared to MV. In this regard, the reduction of 2,2-diphenyl-1-picrylhydrazyl (DPPH) free radical by DMV was 30-fold more effective compared to MV. Ferric ion reduction was 4-fold higher and peroxyl radical reduction was 2.7-fold higher. The interaction with HSA was significantly improved (Stern–Vomer constants, 3.8 × 10(5) mol(−1) L and 2.3 × 10(4) mol(−1) L, for DMV and MV, respectively). The complexation between DMV and HSA was also evidenced by induced circular dichroism (ICD) signal generation in the former due to its fixation in the asymmetric protein pocket. Density-functional calculations (TD-DFT) showed that the ICD spectrum was related to a DMV conformation bearing a dihedral angle of approximately −60°. Similar dihedral angles were obtained in the lowest and most populated DMV cluster poses obtained by molecular docking simulations. The computational studies and experimental displacement studies revealed that DMV binds preferentially at site I. In conclusion, besides being a powerful antioxidant, DMV is also a strong ligand of HSA. This is the first study on the chemical and biophysical properties of DMV, a compound with potential beneficial biological effects.
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spelling pubmed-90655002022-05-04 Methyl divanillate: redox properties and binding affinity with albumin of an antioxidant and potential NADPH oxidase inhibitor de Vasconcelos, Debora Naliati Lima, Angélica Nakagawa Philot, Eric Allison Scott, Ana Lígia Ferreira Boza, Izabelle Amorim de Souza, Aguinaldo Robinson Morgon, Nelson Henrique Ximenes, Valdecir Farias RSC Adv Chemistry Vanillic acid is a widely used food additive (flavouring agent, JECFA number: 959) with many reported beneficial biological effects. The same is true for its ester derivative (methyl vanillate, JECFA number: 159). Based on the increasing evidence that diapocynin, the dimer of apocynin (NADPH oxidase inhibitor), has some improved pharmacological properties compared to its monomer, here the dimer of methyl vanillate (MV), i.e., methyl divanillate (dimer of methyl vanillate, DMV) was synthesized and studied in the context of its redox properties and binding affinity with human serum albumin (HSA). We found that the antioxidant potency of DMV was significantly increased compared to MV. In this regard, the reduction of 2,2-diphenyl-1-picrylhydrazyl (DPPH) free radical by DMV was 30-fold more effective compared to MV. Ferric ion reduction was 4-fold higher and peroxyl radical reduction was 2.7-fold higher. The interaction with HSA was significantly improved (Stern–Vomer constants, 3.8 × 10(5) mol(−1) L and 2.3 × 10(4) mol(−1) L, for DMV and MV, respectively). The complexation between DMV and HSA was also evidenced by induced circular dichroism (ICD) signal generation in the former due to its fixation in the asymmetric protein pocket. Density-functional calculations (TD-DFT) showed that the ICD spectrum was related to a DMV conformation bearing a dihedral angle of approximately −60°. Similar dihedral angles were obtained in the lowest and most populated DMV cluster poses obtained by molecular docking simulations. The computational studies and experimental displacement studies revealed that DMV binds preferentially at site I. In conclusion, besides being a powerful antioxidant, DMV is also a strong ligand of HSA. This is the first study on the chemical and biophysical properties of DMV, a compound with potential beneficial biological effects. The Royal Society of Chemistry 2019-06-26 /pmc/articles/PMC9065500/ /pubmed/35514705 http://dx.doi.org/10.1039/c9ra02465d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
de Vasconcelos, Debora Naliati
Lima, Angélica Nakagawa
Philot, Eric Allison
Scott, Ana Lígia
Ferreira Boza, Izabelle Amorim
de Souza, Aguinaldo Robinson
Morgon, Nelson Henrique
Ximenes, Valdecir Farias
Methyl divanillate: redox properties and binding affinity with albumin of an antioxidant and potential NADPH oxidase inhibitor
title Methyl divanillate: redox properties and binding affinity with albumin of an antioxidant and potential NADPH oxidase inhibitor
title_full Methyl divanillate: redox properties and binding affinity with albumin of an antioxidant and potential NADPH oxidase inhibitor
title_fullStr Methyl divanillate: redox properties and binding affinity with albumin of an antioxidant and potential NADPH oxidase inhibitor
title_full_unstemmed Methyl divanillate: redox properties and binding affinity with albumin of an antioxidant and potential NADPH oxidase inhibitor
title_short Methyl divanillate: redox properties and binding affinity with albumin of an antioxidant and potential NADPH oxidase inhibitor
title_sort methyl divanillate: redox properties and binding affinity with albumin of an antioxidant and potential nadph oxidase inhibitor
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065500/
https://www.ncbi.nlm.nih.gov/pubmed/35514705
http://dx.doi.org/10.1039/c9ra02465d
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