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A Theoretical Study of 8-Chloro-9-Hydroxy-Aflatoxin B(1), the Conversion Product of Aflatoxin B(1) by Neutral Electrolyzed Water

Theoretical studies of 8-chloro-9-hydroxy-aflatoxin B(1) (2) were carried out by Density Functional Theory (DFT). This molecule is the reaction product of the treatment of aflatoxin B(1) (1) with hypochlorous acid, from neutral electrolyzed water. Determination of the structural, electronic and spec...

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Autores principales: Escobedo-González, René, Méndez-Albores, Abraham, Villarreal-Barajas, Tania, Aceves-Hernández, Juan Manuel, Miranda-Ruvalcaba, René, Nicolás-Vázquez, Inés
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4963857/
https://www.ncbi.nlm.nih.gov/pubmed/27455324
http://dx.doi.org/10.3390/toxins8070225
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author Escobedo-González, René
Méndez-Albores, Abraham
Villarreal-Barajas, Tania
Aceves-Hernández, Juan Manuel
Miranda-Ruvalcaba, René
Nicolás-Vázquez, Inés
author_facet Escobedo-González, René
Méndez-Albores, Abraham
Villarreal-Barajas, Tania
Aceves-Hernández, Juan Manuel
Miranda-Ruvalcaba, René
Nicolás-Vázquez, Inés
author_sort Escobedo-González, René
collection PubMed
description Theoretical studies of 8-chloro-9-hydroxy-aflatoxin B(1) (2) were carried out by Density Functional Theory (DFT). This molecule is the reaction product of the treatment of aflatoxin B(1) (1) with hypochlorous acid, from neutral electrolyzed water. Determination of the structural, electronic and spectroscopic properties of the reaction product allowed its theoretical characterization. In order to elucidate the formation process of 2, two reaction pathways were evaluated—the first one considering only ionic species (Cl(+) and OH(−)) and the second one taking into account the entire hypochlorous acid molecule (HOCl). Both pathways were studied theoretically in gas and solution phases. In the first suggested pathway, the reaction involves the addition of chlorenium ion to 1 forming a non-classic carbocation assisted by anchimeric effect of the nearest aromatic system, and then a nucleophilic attack to the intermediate by the hydroxide ion. In the second studied pathway, as a first step, the attack of the double bond from the furanic moiety of 1 to the hypochlorous acid is considered, accomplishing the same non-classical carbocation, and again in the second step, a nucleophilic attack by the hydroxide ion. In order to validate both reaction pathways, the atomic charges, the highest occupied molecular orbital and the lowest unoccupied molecular orbital were obtained for both substrate and product. The corresponding data imply that the C(9) atom is the more suitable site of the substrate to interact with the hydroxide ion. It was demonstrated by theoretical calculations that a vicinal and anti chlorohydrin is produced in the terminal furan ring. Data of the studied compound indicate an important reduction in the cytotoxic and genotoxic potential of the target molecule, as demonstrated previously by our research group using different in vitro assays.
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spelling pubmed-49638572016-08-03 A Theoretical Study of 8-Chloro-9-Hydroxy-Aflatoxin B(1), the Conversion Product of Aflatoxin B(1) by Neutral Electrolyzed Water Escobedo-González, René Méndez-Albores, Abraham Villarreal-Barajas, Tania Aceves-Hernández, Juan Manuel Miranda-Ruvalcaba, René Nicolás-Vázquez, Inés Toxins (Basel) Article Theoretical studies of 8-chloro-9-hydroxy-aflatoxin B(1) (2) were carried out by Density Functional Theory (DFT). This molecule is the reaction product of the treatment of aflatoxin B(1) (1) with hypochlorous acid, from neutral electrolyzed water. Determination of the structural, electronic and spectroscopic properties of the reaction product allowed its theoretical characterization. In order to elucidate the formation process of 2, two reaction pathways were evaluated—the first one considering only ionic species (Cl(+) and OH(−)) and the second one taking into account the entire hypochlorous acid molecule (HOCl). Both pathways were studied theoretically in gas and solution phases. In the first suggested pathway, the reaction involves the addition of chlorenium ion to 1 forming a non-classic carbocation assisted by anchimeric effect of the nearest aromatic system, and then a nucleophilic attack to the intermediate by the hydroxide ion. In the second studied pathway, as a first step, the attack of the double bond from the furanic moiety of 1 to the hypochlorous acid is considered, accomplishing the same non-classical carbocation, and again in the second step, a nucleophilic attack by the hydroxide ion. In order to validate both reaction pathways, the atomic charges, the highest occupied molecular orbital and the lowest unoccupied molecular orbital were obtained for both substrate and product. The corresponding data imply that the C(9) atom is the more suitable site of the substrate to interact with the hydroxide ion. It was demonstrated by theoretical calculations that a vicinal and anti chlorohydrin is produced in the terminal furan ring. Data of the studied compound indicate an important reduction in the cytotoxic and genotoxic potential of the target molecule, as demonstrated previously by our research group using different in vitro assays. MDPI 2016-07-21 /pmc/articles/PMC4963857/ /pubmed/27455324 http://dx.doi.org/10.3390/toxins8070225 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Escobedo-González, René
Méndez-Albores, Abraham
Villarreal-Barajas, Tania
Aceves-Hernández, Juan Manuel
Miranda-Ruvalcaba, René
Nicolás-Vázquez, Inés
A Theoretical Study of 8-Chloro-9-Hydroxy-Aflatoxin B(1), the Conversion Product of Aflatoxin B(1) by Neutral Electrolyzed Water
title A Theoretical Study of 8-Chloro-9-Hydroxy-Aflatoxin B(1), the Conversion Product of Aflatoxin B(1) by Neutral Electrolyzed Water
title_full A Theoretical Study of 8-Chloro-9-Hydroxy-Aflatoxin B(1), the Conversion Product of Aflatoxin B(1) by Neutral Electrolyzed Water
title_fullStr A Theoretical Study of 8-Chloro-9-Hydroxy-Aflatoxin B(1), the Conversion Product of Aflatoxin B(1) by Neutral Electrolyzed Water
title_full_unstemmed A Theoretical Study of 8-Chloro-9-Hydroxy-Aflatoxin B(1), the Conversion Product of Aflatoxin B(1) by Neutral Electrolyzed Water
title_short A Theoretical Study of 8-Chloro-9-Hydroxy-Aflatoxin B(1), the Conversion Product of Aflatoxin B(1) by Neutral Electrolyzed Water
title_sort theoretical study of 8-chloro-9-hydroxy-aflatoxin b(1), the conversion product of aflatoxin b(1) by neutral electrolyzed water
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4963857/
https://www.ncbi.nlm.nih.gov/pubmed/27455324
http://dx.doi.org/10.3390/toxins8070225
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