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Theoretical Study of the Iron Complexes with Lipoic and Dihydrolipoic Acids: Exploring Secondary Antioxidant Activity

The thermodynamic stability of twenty-nine Fe(III) complexes with various deprotonated forms of lipoic (LA) and dihydrolipoic (DHLA) acids, with coordination numbers 4, 5 and 6, is studied at the M06(SMD)/6-31++G(d,p) level of theory in water under physiological pH conditions at 298.15 K. Even thoug...

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Autores principales: Monreal-Corona, Roger, Biddlecombe, Jesse, Ippolito, Angela, Mora-Diez, Nelaine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7465238/
https://www.ncbi.nlm.nih.gov/pubmed/32731543
http://dx.doi.org/10.3390/antiox9080674
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author Monreal-Corona, Roger
Biddlecombe, Jesse
Ippolito, Angela
Mora-Diez, Nelaine
author_facet Monreal-Corona, Roger
Biddlecombe, Jesse
Ippolito, Angela
Mora-Diez, Nelaine
author_sort Monreal-Corona, Roger
collection PubMed
description The thermodynamic stability of twenty-nine Fe(III) complexes with various deprotonated forms of lipoic (LA) and dihydrolipoic (DHLA) acids, with coordination numbers 4, 5 and 6, is studied at the M06(SMD)/6-31++G(d,p) level of theory in water under physiological pH conditions at 298.15 K. Even though the complexes with LA(-) are more stable than those with DHLA(−), the most thermodynamically stable Fe(III) complexes involve DHLA(2−). The twenty-four exergonic complexes are used to evaluate the secondary antioxidant activity of DHLA and LA relative to the Fe(III)/Fe(II) reduction by [Formula: see text] and ascorbate. Rate constants for the single-electron transfer (SET) reactions are calculated. The thermodynamic stability of the Fe(III) complexes does not fully correlate with the rate constant of their SET reactions, but more exergonic complexes usually exhibit smaller SET rate constants. Some Cu(II) complexes and their reduction to Cu(I) are also studied at the same level of theory for comparison. The Fe(III) complexes appear to be more stable than their Cu(II) counterparts. Relative to the Fe(III)/Fe(II) reduction with ascorbate, DHLA can fully inhibit the formation of (•)OH radicals, but not by reaction with [Formula: see text]. Relative to the Cu(II)/Cu(I) reduction with ascorbate, the effects of DHLA are moderate/high, and with [Formula: see text] they are minor. LA has minor to negligible inhibition effects in all the cases considered.
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spelling pubmed-74652382020-09-04 Theoretical Study of the Iron Complexes with Lipoic and Dihydrolipoic Acids: Exploring Secondary Antioxidant Activity Monreal-Corona, Roger Biddlecombe, Jesse Ippolito, Angela Mora-Diez, Nelaine Antioxidants (Basel) Article The thermodynamic stability of twenty-nine Fe(III) complexes with various deprotonated forms of lipoic (LA) and dihydrolipoic (DHLA) acids, with coordination numbers 4, 5 and 6, is studied at the M06(SMD)/6-31++G(d,p) level of theory in water under physiological pH conditions at 298.15 K. Even though the complexes with LA(-) are more stable than those with DHLA(−), the most thermodynamically stable Fe(III) complexes involve DHLA(2−). The twenty-four exergonic complexes are used to evaluate the secondary antioxidant activity of DHLA and LA relative to the Fe(III)/Fe(II) reduction by [Formula: see text] and ascorbate. Rate constants for the single-electron transfer (SET) reactions are calculated. The thermodynamic stability of the Fe(III) complexes does not fully correlate with the rate constant of their SET reactions, but more exergonic complexes usually exhibit smaller SET rate constants. Some Cu(II) complexes and their reduction to Cu(I) are also studied at the same level of theory for comparison. The Fe(III) complexes appear to be more stable than their Cu(II) counterparts. Relative to the Fe(III)/Fe(II) reduction with ascorbate, DHLA can fully inhibit the formation of (•)OH radicals, but not by reaction with [Formula: see text]. Relative to the Cu(II)/Cu(I) reduction with ascorbate, the effects of DHLA are moderate/high, and with [Formula: see text] they are minor. LA has minor to negligible inhibition effects in all the cases considered. MDPI 2020-07-28 /pmc/articles/PMC7465238/ /pubmed/32731543 http://dx.doi.org/10.3390/antiox9080674 Text en © 2020 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
Monreal-Corona, Roger
Biddlecombe, Jesse
Ippolito, Angela
Mora-Diez, Nelaine
Theoretical Study of the Iron Complexes with Lipoic and Dihydrolipoic Acids: Exploring Secondary Antioxidant Activity
title Theoretical Study of the Iron Complexes with Lipoic and Dihydrolipoic Acids: Exploring Secondary Antioxidant Activity
title_full Theoretical Study of the Iron Complexes with Lipoic and Dihydrolipoic Acids: Exploring Secondary Antioxidant Activity
title_fullStr Theoretical Study of the Iron Complexes with Lipoic and Dihydrolipoic Acids: Exploring Secondary Antioxidant Activity
title_full_unstemmed Theoretical Study of the Iron Complexes with Lipoic and Dihydrolipoic Acids: Exploring Secondary Antioxidant Activity
title_short Theoretical Study of the Iron Complexes with Lipoic and Dihydrolipoic Acids: Exploring Secondary Antioxidant Activity
title_sort theoretical study of the iron complexes with lipoic and dihydrolipoic acids: exploring secondary antioxidant activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7465238/
https://www.ncbi.nlm.nih.gov/pubmed/32731543
http://dx.doi.org/10.3390/antiox9080674
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