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Decoding Aging: Understanding the Complex Relationship among Aging, Free Radicals, and GSH

N-aryl maleimides can undergo a 1,4-Michael-type addition reaction with reduced glutathione (GSH), leading to a decreased concentration of GSH and an increased concentration of free radicals (FRs) in cells. GSH is a critical scavenging molecule responsible for protecting cells from oxidation and for...

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Autores principales: López-Navarro, María E., Jarquín-Martínez, Mariana, Sánchez-Labastida, Luis A., Ramírez-Rosales, Daniel, Godínez-Victoria, Marycarmen, Quintas-Granados, Laura Itzel, Trujillo-Ferrara, José Guadalupe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7578726/
https://www.ncbi.nlm.nih.gov/pubmed/33110472
http://dx.doi.org/10.1155/2020/3970860
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author López-Navarro, María E.
Jarquín-Martínez, Mariana
Sánchez-Labastida, Luis A.
Ramírez-Rosales, Daniel
Godínez-Victoria, Marycarmen
Quintas-Granados, Laura Itzel
Trujillo-Ferrara, José Guadalupe
author_facet López-Navarro, María E.
Jarquín-Martínez, Mariana
Sánchez-Labastida, Luis A.
Ramírez-Rosales, Daniel
Godínez-Victoria, Marycarmen
Quintas-Granados, Laura Itzel
Trujillo-Ferrara, José Guadalupe
author_sort López-Navarro, María E.
collection PubMed
description N-aryl maleimides can undergo a 1,4-Michael-type addition reaction with reduced glutathione (GSH), leading to a decreased concentration of GSH and an increased concentration of free radicals (FRs) in cells. GSH is a critical scavenging molecule responsible for protecting cells from oxidation and for maintaining redox homeostasis. N-aryl maleimides disturb redox homeostasis in cells because they scavenge thiol-containing molecules, especially GSH. This study aimed at measuring the concentrations of GSH and FRs by electronic paramagnetic resonance (EPR), in the brain and liver tissue of male Wistar rats (ex vivo) at different ages and after treatment with 3,5-dimaleimylbenzoic acid (3,5-DMB). Our results showed a relationship between age and the concentrations of GSH and FRs in cells. In young rats, the concentration of GSH was higher than in old rats, while the concentration of FRs was higher in adult rats than in young rats, suggesting an inverse relationship between GSH and FRs. On the other hand, the reaction of 3,5-DMB (an electrophilic maleimide) with cellular GSH increased the FR content. The results of this study contribute to the awareness that the process of aging implies not only a loss of tissue function but also essential changes in the molecular contents of cells, especially the concentrations of FRs and GSH.
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spelling pubmed-75787262020-10-26 Decoding Aging: Understanding the Complex Relationship among Aging, Free Radicals, and GSH López-Navarro, María E. Jarquín-Martínez, Mariana Sánchez-Labastida, Luis A. Ramírez-Rosales, Daniel Godínez-Victoria, Marycarmen Quintas-Granados, Laura Itzel Trujillo-Ferrara, José Guadalupe Oxid Med Cell Longev Research Article N-aryl maleimides can undergo a 1,4-Michael-type addition reaction with reduced glutathione (GSH), leading to a decreased concentration of GSH and an increased concentration of free radicals (FRs) in cells. GSH is a critical scavenging molecule responsible for protecting cells from oxidation and for maintaining redox homeostasis. N-aryl maleimides disturb redox homeostasis in cells because they scavenge thiol-containing molecules, especially GSH. This study aimed at measuring the concentrations of GSH and FRs by electronic paramagnetic resonance (EPR), in the brain and liver tissue of male Wistar rats (ex vivo) at different ages and after treatment with 3,5-dimaleimylbenzoic acid (3,5-DMB). Our results showed a relationship between age and the concentrations of GSH and FRs in cells. In young rats, the concentration of GSH was higher than in old rats, while the concentration of FRs was higher in adult rats than in young rats, suggesting an inverse relationship between GSH and FRs. On the other hand, the reaction of 3,5-DMB (an electrophilic maleimide) with cellular GSH increased the FR content. The results of this study contribute to the awareness that the process of aging implies not only a loss of tissue function but also essential changes in the molecular contents of cells, especially the concentrations of FRs and GSH. Hindawi 2020-10-12 /pmc/articles/PMC7578726/ /pubmed/33110472 http://dx.doi.org/10.1155/2020/3970860 Text en Copyright © 2020 María E. López-Navarro et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
López-Navarro, María E.
Jarquín-Martínez, Mariana
Sánchez-Labastida, Luis A.
Ramírez-Rosales, Daniel
Godínez-Victoria, Marycarmen
Quintas-Granados, Laura Itzel
Trujillo-Ferrara, José Guadalupe
Decoding Aging: Understanding the Complex Relationship among Aging, Free Radicals, and GSH
title Decoding Aging: Understanding the Complex Relationship among Aging, Free Radicals, and GSH
title_full Decoding Aging: Understanding the Complex Relationship among Aging, Free Radicals, and GSH
title_fullStr Decoding Aging: Understanding the Complex Relationship among Aging, Free Radicals, and GSH
title_full_unstemmed Decoding Aging: Understanding the Complex Relationship among Aging, Free Radicals, and GSH
title_short Decoding Aging: Understanding the Complex Relationship among Aging, Free Radicals, and GSH
title_sort decoding aging: understanding the complex relationship among aging, free radicals, and gsh
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7578726/
https://www.ncbi.nlm.nih.gov/pubmed/33110472
http://dx.doi.org/10.1155/2020/3970860
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