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Glutathione maintenance mitigates age-related susceptibility to redox cycling agents

Isolated hepatocytes from young (4–6 mo) and old (24–26 mo) F344 rats were exposed to increasing concentrations of menadione, a vitamin K derivative and redox cycling agent, to determine whether the age-related decline in Nrf2-mediated detoxification defenses resulted in heightened susceptibility to...

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Autores principales: Thomas, Nicholas O., Shay, Kate P., Kelley, Amanda R., Butler, Judy A., Hagen, Tory M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5040638/
https://www.ncbi.nlm.nih.gov/pubmed/27687220
http://dx.doi.org/10.1016/j.redox.2016.09.010
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author Thomas, Nicholas O.
Shay, Kate P.
Kelley, Amanda R.
Butler, Judy A.
Hagen, Tory M.
author_facet Thomas, Nicholas O.
Shay, Kate P.
Kelley, Amanda R.
Butler, Judy A.
Hagen, Tory M.
author_sort Thomas, Nicholas O.
collection PubMed
description Isolated hepatocytes from young (4–6 mo) and old (24–26 mo) F344 rats were exposed to increasing concentrations of menadione, a vitamin K derivative and redox cycling agent, to determine whether the age-related decline in Nrf2-mediated detoxification defenses resulted in heightened susceptibility to xenobiotic insult. An LC(50) for each age group was established, which showed that aging resulted in a nearly 2-fold increase in susceptibility to menadione (LC(50) for young: 405 μM; LC(50) for old: 275 μM). Examination of the known Nrf2-regulated pathways associated with menadione detoxification revealed, surprisingly, that NAD(P)H: quinone oxido-reductase 1 (NQO1) protein levels and activity were induced 9-fold and 4-fold with age, respectively (p=0.0019 and p=0.018; N=3), but glutathione peroxidase 4 (GPX4) declined by 70% (p=0.0043; N=3). These results indicate toxicity may stem from vulnerability to lipid peroxidation instead of inadequate reduction of menadione semi-quinone. Lipid peroxidation was 2-fold higher, and GSH declined by a 3-fold greater margin in old versus young rat cells given 300 µM menadione (p<0.05 and p≤0.01 respectively; N=3). We therefore provided 400 µM N-acetyl-cysteine (NAC) to hepatocytes from old rats before menadione exposure to alleviate limits in cysteine substrate availability for GSH synthesis during challenge. NAC pretreatment resulted in a >2-fold reduction in cell death, suggesting that the age-related increase in menadione susceptibility likely stems from attenuated GSH-dependent defenses. This data identifies cellular targets for intervention in order to limit age-related toxicological insults to menadione and potentially other redox cycling compounds.
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spelling pubmed-50406382016-10-05 Glutathione maintenance mitigates age-related susceptibility to redox cycling agents Thomas, Nicholas O. Shay, Kate P. Kelley, Amanda R. Butler, Judy A. Hagen, Tory M. Redox Biol Research Paper Isolated hepatocytes from young (4–6 mo) and old (24–26 mo) F344 rats were exposed to increasing concentrations of menadione, a vitamin K derivative and redox cycling agent, to determine whether the age-related decline in Nrf2-mediated detoxification defenses resulted in heightened susceptibility to xenobiotic insult. An LC(50) for each age group was established, which showed that aging resulted in a nearly 2-fold increase in susceptibility to menadione (LC(50) for young: 405 μM; LC(50) for old: 275 μM). Examination of the known Nrf2-regulated pathways associated with menadione detoxification revealed, surprisingly, that NAD(P)H: quinone oxido-reductase 1 (NQO1) protein levels and activity were induced 9-fold and 4-fold with age, respectively (p=0.0019 and p=0.018; N=3), but glutathione peroxidase 4 (GPX4) declined by 70% (p=0.0043; N=3). These results indicate toxicity may stem from vulnerability to lipid peroxidation instead of inadequate reduction of menadione semi-quinone. Lipid peroxidation was 2-fold higher, and GSH declined by a 3-fold greater margin in old versus young rat cells given 300 µM menadione (p<0.05 and p≤0.01 respectively; N=3). We therefore provided 400 µM N-acetyl-cysteine (NAC) to hepatocytes from old rats before menadione exposure to alleviate limits in cysteine substrate availability for GSH synthesis during challenge. NAC pretreatment resulted in a >2-fold reduction in cell death, suggesting that the age-related increase in menadione susceptibility likely stems from attenuated GSH-dependent defenses. This data identifies cellular targets for intervention in order to limit age-related toxicological insults to menadione and potentially other redox cycling compounds. Elsevier 2016-09-22 /pmc/articles/PMC5040638/ /pubmed/27687220 http://dx.doi.org/10.1016/j.redox.2016.09.010 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Thomas, Nicholas O.
Shay, Kate P.
Kelley, Amanda R.
Butler, Judy A.
Hagen, Tory M.
Glutathione maintenance mitigates age-related susceptibility to redox cycling agents
title Glutathione maintenance mitigates age-related susceptibility to redox cycling agents
title_full Glutathione maintenance mitigates age-related susceptibility to redox cycling agents
title_fullStr Glutathione maintenance mitigates age-related susceptibility to redox cycling agents
title_full_unstemmed Glutathione maintenance mitigates age-related susceptibility to redox cycling agents
title_short Glutathione maintenance mitigates age-related susceptibility to redox cycling agents
title_sort glutathione maintenance mitigates age-related susceptibility to redox cycling agents
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5040638/
https://www.ncbi.nlm.nih.gov/pubmed/27687220
http://dx.doi.org/10.1016/j.redox.2016.09.010
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