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Apocynin: Chemical and Biophysical Properties of a NADPH Oxidase Inhibitor

Apocynin is the most employed inhibitor of NADPH oxidase (NOX), a multienzymatic complex capable of catalyzing the one-electron reduction of molecular oxygen to the superoxide anion. Despite controversies about its selectivity, apocynin has been used as one of the most promising drugs in experimenta...

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Autores principales: Petrônio, Maicon S., Zeraik, Maria Luiza, da Fonseca, Luiz Marcos, Ximenes, Valdecir F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6269682/
https://www.ncbi.nlm.nih.gov/pubmed/23455672
http://dx.doi.org/10.3390/molecules18032821
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author Petrônio, Maicon S.
Zeraik, Maria Luiza
da Fonseca, Luiz Marcos
Ximenes, Valdecir F.
author_facet Petrônio, Maicon S.
Zeraik, Maria Luiza
da Fonseca, Luiz Marcos
Ximenes, Valdecir F.
author_sort Petrônio, Maicon S.
collection PubMed
description Apocynin is the most employed inhibitor of NADPH oxidase (NOX), a multienzymatic complex capable of catalyzing the one-electron reduction of molecular oxygen to the superoxide anion. Despite controversies about its selectivity, apocynin has been used as one of the most promising drugs in experimental models of inflammatory and neurodegenerative diseases. Here, we aimed to study the chemical and biophysical properties of apocynin. The oxidation potential was determined by cyclic voltammetry (Epa = 0.76V), the hydrophobicity index was calculated (logP = 0.83) and the molar absorption coefficient was determined (ε(275nm) = 1.1 × 10(4) M(−1) cm(−1)). Apocynin was a weak free radical scavenger (as measured using the DPPH, peroxyl radical and nitric oxide assays) when compared to protocatechuic acid, used here as a reference antioxidant. On the other hand, apocynin was more effective than protocatechuic acid as scavenger of the non-radical species hypochlorous acid. Apocynin reacted promptly with the non-radical reactive species H(2)O(2) only in the presence of peroxidase. This finding is relevant, since it represents a new pathway for depleting H(2)O(2) in cellular experimental models, besides the direct inhibition of NADPH oxidase. This could be relevant for its application as an inhibitor of NOX4, since this isoform produces H(2)O(2) and not superoxide anion. The binding parameters calculated by fluorescence quenching showed that apocynin binds to human serum albumin (HSA) with a binding affinity of 2.19 × 10(4) M(−1). The association did not alter the secondary and tertiary structure of HSA, as verified by synchronous fluorescence and circular dichroism. The displacement of fluorescent probes suggested that apocynin binds to site I and site II of HSA. Considering the current biomedical applications of this phytochemical, the dissemination of these chemical and biophysical properties can be very helpful for scientists and physicians interested in the use of apocynin.
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spelling pubmed-62696822018-12-20 Apocynin: Chemical and Biophysical Properties of a NADPH Oxidase Inhibitor Petrônio, Maicon S. Zeraik, Maria Luiza da Fonseca, Luiz Marcos Ximenes, Valdecir F. Molecules Article Apocynin is the most employed inhibitor of NADPH oxidase (NOX), a multienzymatic complex capable of catalyzing the one-electron reduction of molecular oxygen to the superoxide anion. Despite controversies about its selectivity, apocynin has been used as one of the most promising drugs in experimental models of inflammatory and neurodegenerative diseases. Here, we aimed to study the chemical and biophysical properties of apocynin. The oxidation potential was determined by cyclic voltammetry (Epa = 0.76V), the hydrophobicity index was calculated (logP = 0.83) and the molar absorption coefficient was determined (ε(275nm) = 1.1 × 10(4) M(−1) cm(−1)). Apocynin was a weak free radical scavenger (as measured using the DPPH, peroxyl radical and nitric oxide assays) when compared to protocatechuic acid, used here as a reference antioxidant. On the other hand, apocynin was more effective than protocatechuic acid as scavenger of the non-radical species hypochlorous acid. Apocynin reacted promptly with the non-radical reactive species H(2)O(2) only in the presence of peroxidase. This finding is relevant, since it represents a new pathway for depleting H(2)O(2) in cellular experimental models, besides the direct inhibition of NADPH oxidase. This could be relevant for its application as an inhibitor of NOX4, since this isoform produces H(2)O(2) and not superoxide anion. The binding parameters calculated by fluorescence quenching showed that apocynin binds to human serum albumin (HSA) with a binding affinity of 2.19 × 10(4) M(−1). The association did not alter the secondary and tertiary structure of HSA, as verified by synchronous fluorescence and circular dichroism. The displacement of fluorescent probes suggested that apocynin binds to site I and site II of HSA. Considering the current biomedical applications of this phytochemical, the dissemination of these chemical and biophysical properties can be very helpful for scientists and physicians interested in the use of apocynin. MDPI 2013-03-01 /pmc/articles/PMC6269682/ /pubmed/23455672 http://dx.doi.org/10.3390/molecules18032821 Text en © 2013 by the authors; licensee MDPI, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0/ This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Petrônio, Maicon S.
Zeraik, Maria Luiza
da Fonseca, Luiz Marcos
Ximenes, Valdecir F.
Apocynin: Chemical and Biophysical Properties of a NADPH Oxidase Inhibitor
title Apocynin: Chemical and Biophysical Properties of a NADPH Oxidase Inhibitor
title_full Apocynin: Chemical and Biophysical Properties of a NADPH Oxidase Inhibitor
title_fullStr Apocynin: Chemical and Biophysical Properties of a NADPH Oxidase Inhibitor
title_full_unstemmed Apocynin: Chemical and Biophysical Properties of a NADPH Oxidase Inhibitor
title_short Apocynin: Chemical and Biophysical Properties of a NADPH Oxidase Inhibitor
title_sort apocynin: chemical and biophysical properties of a nadph oxidase inhibitor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6269682/
https://www.ncbi.nlm.nih.gov/pubmed/23455672
http://dx.doi.org/10.3390/molecules18032821
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