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Improvement of Pro-Oxidant Capacity of Protocatechuic Acid by Esterification

Pro-oxidant effects of phenolic compounds are usually correlated to the one-electron redox potential of the phenoxyl radicals. Here we demonstrated that, besides their oxidizability, hydrophobicity can also be a decisive factor. We found that esterification of protocatechuic acid (P0) provoked a pro...

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Autores principales: Zeraik, Maria Luiza, Petrônio, Maicon S., Coelho, Dyovani, Regasini, Luis Octavio, Silva, Dulce H. S., da Fonseca, Luiz Marcos, Machado, Sergio A. S., Bolzani, Vanderlan S., Ximenes, Valdecir F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207763/
https://www.ncbi.nlm.nih.gov/pubmed/25340774
http://dx.doi.org/10.1371/journal.pone.0110277
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author Zeraik, Maria Luiza
Petrônio, Maicon S.
Coelho, Dyovani
Regasini, Luis Octavio
Silva, Dulce H. S.
da Fonseca, Luiz Marcos
Machado, Sergio A. S.
Bolzani, Vanderlan S.
Ximenes, Valdecir F.
author_facet Zeraik, Maria Luiza
Petrônio, Maicon S.
Coelho, Dyovani
Regasini, Luis Octavio
Silva, Dulce H. S.
da Fonseca, Luiz Marcos
Machado, Sergio A. S.
Bolzani, Vanderlan S.
Ximenes, Valdecir F.
author_sort Zeraik, Maria Luiza
collection PubMed
description Pro-oxidant effects of phenolic compounds are usually correlated to the one-electron redox potential of the phenoxyl radicals. Here we demonstrated that, besides their oxidizability, hydrophobicity can also be a decisive factor. We found that esterification of protocatechuic acid (P0) provoked a profound influence in its pro-oxidant capacity. The esters bearing alkyl chains containing two (P2), four (P4) and seven (P7) carbons, but not the acid precursor (P0), were able to exacerbate the oxidation of trolox, α-tocopherol and rifampicin. This effect was also dependent on the catechol moiety, since neither gallic acid nor butyl gallate showed any pro-oxidant effects. A comparison was also made with apocynin, which is well-characterized regarding its pro-oxidant properties. P7 was more efficient than apocynin regarding co-oxidation of trolox. However, P7 was not able to co-oxidize glutathione and NADH, which are targets of the apocynin radical. A correlation was found between pro-oxidant capacity and the stability of the radicals, as suggested by the intensity of the peak current in the differential pulse voltammetry experiments. In conclusion, taking into account that hydroquinone and related moieties are frequently found in biomolecules and quinone-based chemotherapeutics, our demonstration that esters of protocatechuic acid are specific and potent co-catalysts in their oxidations may be very relevant as a pathway to exacerbate redox cycling reactions, which are usually involved in their biological and pharmacological mechanisms of action.
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spelling pubmed-42077632014-10-27 Improvement of Pro-Oxidant Capacity of Protocatechuic Acid by Esterification Zeraik, Maria Luiza Petrônio, Maicon S. Coelho, Dyovani Regasini, Luis Octavio Silva, Dulce H. S. da Fonseca, Luiz Marcos Machado, Sergio A. S. Bolzani, Vanderlan S. Ximenes, Valdecir F. PLoS One Research Article Pro-oxidant effects of phenolic compounds are usually correlated to the one-electron redox potential of the phenoxyl radicals. Here we demonstrated that, besides their oxidizability, hydrophobicity can also be a decisive factor. We found that esterification of protocatechuic acid (P0) provoked a profound influence in its pro-oxidant capacity. The esters bearing alkyl chains containing two (P2), four (P4) and seven (P7) carbons, but not the acid precursor (P0), were able to exacerbate the oxidation of trolox, α-tocopherol and rifampicin. This effect was also dependent on the catechol moiety, since neither gallic acid nor butyl gallate showed any pro-oxidant effects. A comparison was also made with apocynin, which is well-characterized regarding its pro-oxidant properties. P7 was more efficient than apocynin regarding co-oxidation of trolox. However, P7 was not able to co-oxidize glutathione and NADH, which are targets of the apocynin radical. A correlation was found between pro-oxidant capacity and the stability of the radicals, as suggested by the intensity of the peak current in the differential pulse voltammetry experiments. In conclusion, taking into account that hydroquinone and related moieties are frequently found in biomolecules and quinone-based chemotherapeutics, our demonstration that esters of protocatechuic acid are specific and potent co-catalysts in their oxidations may be very relevant as a pathway to exacerbate redox cycling reactions, which are usually involved in their biological and pharmacological mechanisms of action. Public Library of Science 2014-10-23 /pmc/articles/PMC4207763/ /pubmed/25340774 http://dx.doi.org/10.1371/journal.pone.0110277 Text en © 2014 Zeraik et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zeraik, Maria Luiza
Petrônio, Maicon S.
Coelho, Dyovani
Regasini, Luis Octavio
Silva, Dulce H. S.
da Fonseca, Luiz Marcos
Machado, Sergio A. S.
Bolzani, Vanderlan S.
Ximenes, Valdecir F.
Improvement of Pro-Oxidant Capacity of Protocatechuic Acid by Esterification
title Improvement of Pro-Oxidant Capacity of Protocatechuic Acid by Esterification
title_full Improvement of Pro-Oxidant Capacity of Protocatechuic Acid by Esterification
title_fullStr Improvement of Pro-Oxidant Capacity of Protocatechuic Acid by Esterification
title_full_unstemmed Improvement of Pro-Oxidant Capacity of Protocatechuic Acid by Esterification
title_short Improvement of Pro-Oxidant Capacity of Protocatechuic Acid by Esterification
title_sort improvement of pro-oxidant capacity of protocatechuic acid by esterification
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207763/
https://www.ncbi.nlm.nih.gov/pubmed/25340774
http://dx.doi.org/10.1371/journal.pone.0110277
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