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The Amoebicidal Activity of Diferrocenyl Derivatives: A Significant Dependence on the Electronic Environment

Amoebiasis is the second leading cause of death worldwide associated with parasitic disease and is becoming a critical health problem in low-income countries, urging new treatment alternatives. One of the most promising strategies is enhancing the redox imbalance within these susceptible parasites r...

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Autores principales: Toledano-Magaña, Yanis, Néquiz, Mario, Valenzuela-Salas, Lucía Margarita, Sánchez-García, Jessica J., Galindo-Murillo, Rodrigo, García-Ramos, Juan Carlos, Klimova, Elena I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10458203/
https://www.ncbi.nlm.nih.gov/pubmed/37630260
http://dx.doi.org/10.3390/molecules28166008
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author Toledano-Magaña, Yanis
Néquiz, Mario
Valenzuela-Salas, Lucía Margarita
Sánchez-García, Jessica J.
Galindo-Murillo, Rodrigo
García-Ramos, Juan Carlos
Klimova, Elena I.
author_facet Toledano-Magaña, Yanis
Néquiz, Mario
Valenzuela-Salas, Lucía Margarita
Sánchez-García, Jessica J.
Galindo-Murillo, Rodrigo
García-Ramos, Juan Carlos
Klimova, Elena I.
author_sort Toledano-Magaña, Yanis
collection PubMed
description Amoebiasis is the second leading cause of death worldwide associated with parasitic disease and is becoming a critical health problem in low-income countries, urging new treatment alternatives. One of the most promising strategies is enhancing the redox imbalance within these susceptible parasites related to their limited antioxidant defense system. Metal-based drugs represent a perfect option due to their extraordinary capacity to stabilize different oxidation states and adopt diverse geometries, allowing their interaction with several molecular targets. This work describes the amoebicidal activity of five 2-(Z-2,3-diferrocenylvinyl)-4X-4,5-dihydrooxazole derivatives (X = H (3a), Me (3b), iPr (3c), Ph (3d), and benzyl (3e)) on Entamoeba histolytica trophozoites and the physicochemical, experimental, and theoretical properties that can be used to describe the antiproliferative activity. The growth inhibition capacity of these organometallic compounds is strongly related to a fine balance between the compounds’ redox potential and hydrophilic character. The antiproliferative activity of diferrocenyl derivatives studied herein could be described either with the redox potential, the energy of electronic transitions, logP, or the calculated HOMO–LUMO values. Compound 3d presents the highest antiproliferative activity of the series with an IC(50) of 23 µM. However, the results of this work provide a pipeline to improve the amoebicidal activity of these compounds through the directed modification of their electronic environment.
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spelling pubmed-104582032023-08-27 The Amoebicidal Activity of Diferrocenyl Derivatives: A Significant Dependence on the Electronic Environment Toledano-Magaña, Yanis Néquiz, Mario Valenzuela-Salas, Lucía Margarita Sánchez-García, Jessica J. Galindo-Murillo, Rodrigo García-Ramos, Juan Carlos Klimova, Elena I. Molecules Article Amoebiasis is the second leading cause of death worldwide associated with parasitic disease and is becoming a critical health problem in low-income countries, urging new treatment alternatives. One of the most promising strategies is enhancing the redox imbalance within these susceptible parasites related to their limited antioxidant defense system. Metal-based drugs represent a perfect option due to their extraordinary capacity to stabilize different oxidation states and adopt diverse geometries, allowing their interaction with several molecular targets. This work describes the amoebicidal activity of five 2-(Z-2,3-diferrocenylvinyl)-4X-4,5-dihydrooxazole derivatives (X = H (3a), Me (3b), iPr (3c), Ph (3d), and benzyl (3e)) on Entamoeba histolytica trophozoites and the physicochemical, experimental, and theoretical properties that can be used to describe the antiproliferative activity. The growth inhibition capacity of these organometallic compounds is strongly related to a fine balance between the compounds’ redox potential and hydrophilic character. The antiproliferative activity of diferrocenyl derivatives studied herein could be described either with the redox potential, the energy of electronic transitions, logP, or the calculated HOMO–LUMO values. Compound 3d presents the highest antiproliferative activity of the series with an IC(50) of 23 µM. However, the results of this work provide a pipeline to improve the amoebicidal activity of these compounds through the directed modification of their electronic environment. MDPI 2023-08-11 /pmc/articles/PMC10458203/ /pubmed/37630260 http://dx.doi.org/10.3390/molecules28166008 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Toledano-Magaña, Yanis
Néquiz, Mario
Valenzuela-Salas, Lucía Margarita
Sánchez-García, Jessica J.
Galindo-Murillo, Rodrigo
García-Ramos, Juan Carlos
Klimova, Elena I.
The Amoebicidal Activity of Diferrocenyl Derivatives: A Significant Dependence on the Electronic Environment
title The Amoebicidal Activity of Diferrocenyl Derivatives: A Significant Dependence on the Electronic Environment
title_full The Amoebicidal Activity of Diferrocenyl Derivatives: A Significant Dependence on the Electronic Environment
title_fullStr The Amoebicidal Activity of Diferrocenyl Derivatives: A Significant Dependence on the Electronic Environment
title_full_unstemmed The Amoebicidal Activity of Diferrocenyl Derivatives: A Significant Dependence on the Electronic Environment
title_short The Amoebicidal Activity of Diferrocenyl Derivatives: A Significant Dependence on the Electronic Environment
title_sort amoebicidal activity of diferrocenyl derivatives: a significant dependence on the electronic environment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10458203/
https://www.ncbi.nlm.nih.gov/pubmed/37630260
http://dx.doi.org/10.3390/molecules28166008
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