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Antioxidant Properties of Fullerene Derivatives Depend on Their Chemical Structure: A Study of Two Fullerene Derivatives on HELFs

Oxidative stress is a major issue in a wide number of pathologies (neurodegenerative, cardiovascular, immune diseases, and cancer). Because of this, the search for new antioxidants is an important issue. One of the potential antioxidants that has been enthusiastically discussed in the past twenty ye...

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Autores principales: Sergeeva, Vasilina, Kraevaya, Olga, Ershova, Elizaveta, Kameneva, Larisa, Malinovskaya, Elena, Dolgikh, Olga, Konkova, Marina, Voronov, Iliya, Zhilenkov, Alexander, Veiko, Natalia, Troshin, Pavel, Kutsev, Sergei, Kostyuk, Svetlana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6360044/
https://www.ncbi.nlm.nih.gov/pubmed/30800207
http://dx.doi.org/10.1155/2019/4398695
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author Sergeeva, Vasilina
Kraevaya, Olga
Ershova, Elizaveta
Kameneva, Larisa
Malinovskaya, Elena
Dolgikh, Olga
Konkova, Marina
Voronov, Iliya
Zhilenkov, Alexander
Veiko, Natalia
Troshin, Pavel
Kutsev, Sergei
Kostyuk, Svetlana
author_facet Sergeeva, Vasilina
Kraevaya, Olga
Ershova, Elizaveta
Kameneva, Larisa
Malinovskaya, Elena
Dolgikh, Olga
Konkova, Marina
Voronov, Iliya
Zhilenkov, Alexander
Veiko, Natalia
Troshin, Pavel
Kutsev, Sergei
Kostyuk, Svetlana
author_sort Sergeeva, Vasilina
collection PubMed
description Oxidative stress is a major issue in a wide number of pathologies (neurodegenerative, cardiovascular, immune diseases, and cancer). Because of this, the search for new antioxidants is an important issue. One of the potential antioxidants that has been enthusiastically discussed in the past twenty years is fullerene and its derivatives. Although in aqueous solutions fullerene derivatives have shown to be antioxidants, their properties in this regard within the cells are controversially discussed. We have studied two different water-soluble fullerene C60 and C70 derivatives on human embryonic lung fibroblasts at a wide range of concentrations. Both of them cause a decrease in cellular ROS at short times of incubation (1 hour). Their prolonged action, however, is fundamentally different: derivative GI-761 causes secondary oxidative stress whereas derivative VI-419-P3K keeps ROS levels under control values. To gain a better understanding of this effect, we assessed factors that could play a role in the response of cells to fullerene derivatives. Increased ROS production occurred due to NOX4 upregulation by GI-761. Derivative VI-419-P3K activated the transcription of antioxidant master regulator NRF2 and caused its translocation to the nucleus. This data suggests that the antioxidant effect of fullerene derivatives depends on their chemical structure.
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spelling pubmed-63600442019-02-24 Antioxidant Properties of Fullerene Derivatives Depend on Their Chemical Structure: A Study of Two Fullerene Derivatives on HELFs Sergeeva, Vasilina Kraevaya, Olga Ershova, Elizaveta Kameneva, Larisa Malinovskaya, Elena Dolgikh, Olga Konkova, Marina Voronov, Iliya Zhilenkov, Alexander Veiko, Natalia Troshin, Pavel Kutsev, Sergei Kostyuk, Svetlana Oxid Med Cell Longev Research Article Oxidative stress is a major issue in a wide number of pathologies (neurodegenerative, cardiovascular, immune diseases, and cancer). Because of this, the search for new antioxidants is an important issue. One of the potential antioxidants that has been enthusiastically discussed in the past twenty years is fullerene and its derivatives. Although in aqueous solutions fullerene derivatives have shown to be antioxidants, their properties in this regard within the cells are controversially discussed. We have studied two different water-soluble fullerene C60 and C70 derivatives on human embryonic lung fibroblasts at a wide range of concentrations. Both of them cause a decrease in cellular ROS at short times of incubation (1 hour). Their prolonged action, however, is fundamentally different: derivative GI-761 causes secondary oxidative stress whereas derivative VI-419-P3K keeps ROS levels under control values. To gain a better understanding of this effect, we assessed factors that could play a role in the response of cells to fullerene derivatives. Increased ROS production occurred due to NOX4 upregulation by GI-761. Derivative VI-419-P3K activated the transcription of antioxidant master regulator NRF2 and caused its translocation to the nucleus. This data suggests that the antioxidant effect of fullerene derivatives depends on their chemical structure. Hindawi 2019-01-17 /pmc/articles/PMC6360044/ /pubmed/30800207 http://dx.doi.org/10.1155/2019/4398695 Text en Copyright © 2019 Vasilina Sergeeva et al. http://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
Sergeeva, Vasilina
Kraevaya, Olga
Ershova, Elizaveta
Kameneva, Larisa
Malinovskaya, Elena
Dolgikh, Olga
Konkova, Marina
Voronov, Iliya
Zhilenkov, Alexander
Veiko, Natalia
Troshin, Pavel
Kutsev, Sergei
Kostyuk, Svetlana
Antioxidant Properties of Fullerene Derivatives Depend on Their Chemical Structure: A Study of Two Fullerene Derivatives on HELFs
title Antioxidant Properties of Fullerene Derivatives Depend on Their Chemical Structure: A Study of Two Fullerene Derivatives on HELFs
title_full Antioxidant Properties of Fullerene Derivatives Depend on Their Chemical Structure: A Study of Two Fullerene Derivatives on HELFs
title_fullStr Antioxidant Properties of Fullerene Derivatives Depend on Their Chemical Structure: A Study of Two Fullerene Derivatives on HELFs
title_full_unstemmed Antioxidant Properties of Fullerene Derivatives Depend on Their Chemical Structure: A Study of Two Fullerene Derivatives on HELFs
title_short Antioxidant Properties of Fullerene Derivatives Depend on Their Chemical Structure: A Study of Two Fullerene Derivatives on HELFs
title_sort antioxidant properties of fullerene derivatives depend on their chemical structure: a study of two fullerene derivatives on helfs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6360044/
https://www.ncbi.nlm.nih.gov/pubmed/30800207
http://dx.doi.org/10.1155/2019/4398695
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