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Preparation, Antioxidant Properties and Ability to Increase Intracellular NO of a New Pyridoxine Derivative B6NO

In the case of various pathologies, an imbalance between ROS generation and the endogenous AOS can be observed, which leads to excessive ROS accumulation, intensification of LPO processes, and oxidative stress. For the prevention of diseases associated with oxidative stress, drugs with antioxidant a...

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Autores principales: Balakina, Anastasia, Prikhodchenko, Tatyana, Amozova, Vera, Stupina, Tatyana, Mumyatova, Victoria, Neganova, Margarita, Yakushev, Ilya, Kornev, Alexey, Gadomsky, Svyatoslav, Fedorov, Boris, Mishchenko, Denis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8465670/
https://www.ncbi.nlm.nih.gov/pubmed/34573083
http://dx.doi.org/10.3390/antiox10091451
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author Balakina, Anastasia
Prikhodchenko, Tatyana
Amozova, Vera
Stupina, Tatyana
Mumyatova, Victoria
Neganova, Margarita
Yakushev, Ilya
Kornev, Alexey
Gadomsky, Svyatoslav
Fedorov, Boris
Mishchenko, Denis
author_facet Balakina, Anastasia
Prikhodchenko, Tatyana
Amozova, Vera
Stupina, Tatyana
Mumyatova, Victoria
Neganova, Margarita
Yakushev, Ilya
Kornev, Alexey
Gadomsky, Svyatoslav
Fedorov, Boris
Mishchenko, Denis
author_sort Balakina, Anastasia
collection PubMed
description In the case of various pathologies, an imbalance between ROS generation and the endogenous AOS can be observed, which leads to excessive ROS accumulation, intensification of LPO processes, and oxidative stress. For the prevention of diseases associated with oxidative stress, drugs with antioxidant activity can be used. The cytotoxic, antioxidant, and NO-donor properties of the new hybrid compound B6NO (di(3-hydroxy-4,5-bis(hydroxymethyl)-2-methylpyridinium) salt of 2-(nitrooxy)butanedioic acid) were studied. It was determined that B6NO chelates iron ions by 94%, which indicates B6NO’s ability to block the Fenton reaction. The hybrid compound B6NO inhibits the process of initiated lipid peroxidation more effectively than pyridoxine. It was shown that B6NO exhibits antioxidant properties by decreasing ROS concentration in normal cells during the oxidative stress induction by tert-Butyl peroxide. At the same time, the B6NO antioxidant activity on tumor cells was significantly lower. B6NO significantly increases the intracellular nitrogen monoxide accumulation and showed low cytotoxicity for normal cells (IC(50) > 4 mM). Thus, the results indicate a high potential of the B6NO as an antioxidant compound.
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spelling pubmed-84656702021-09-27 Preparation, Antioxidant Properties and Ability to Increase Intracellular NO of a New Pyridoxine Derivative B6NO Balakina, Anastasia Prikhodchenko, Tatyana Amozova, Vera Stupina, Tatyana Mumyatova, Victoria Neganova, Margarita Yakushev, Ilya Kornev, Alexey Gadomsky, Svyatoslav Fedorov, Boris Mishchenko, Denis Antioxidants (Basel) Article In the case of various pathologies, an imbalance between ROS generation and the endogenous AOS can be observed, which leads to excessive ROS accumulation, intensification of LPO processes, and oxidative stress. For the prevention of diseases associated with oxidative stress, drugs with antioxidant activity can be used. The cytotoxic, antioxidant, and NO-donor properties of the new hybrid compound B6NO (di(3-hydroxy-4,5-bis(hydroxymethyl)-2-methylpyridinium) salt of 2-(nitrooxy)butanedioic acid) were studied. It was determined that B6NO chelates iron ions by 94%, which indicates B6NO’s ability to block the Fenton reaction. The hybrid compound B6NO inhibits the process of initiated lipid peroxidation more effectively than pyridoxine. It was shown that B6NO exhibits antioxidant properties by decreasing ROS concentration in normal cells during the oxidative stress induction by tert-Butyl peroxide. At the same time, the B6NO antioxidant activity on tumor cells was significantly lower. B6NO significantly increases the intracellular nitrogen monoxide accumulation and showed low cytotoxicity for normal cells (IC(50) > 4 mM). Thus, the results indicate a high potential of the B6NO as an antioxidant compound. MDPI 2021-09-13 /pmc/articles/PMC8465670/ /pubmed/34573083 http://dx.doi.org/10.3390/antiox10091451 Text en © 2021 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
Balakina, Anastasia
Prikhodchenko, Tatyana
Amozova, Vera
Stupina, Tatyana
Mumyatova, Victoria
Neganova, Margarita
Yakushev, Ilya
Kornev, Alexey
Gadomsky, Svyatoslav
Fedorov, Boris
Mishchenko, Denis
Preparation, Antioxidant Properties and Ability to Increase Intracellular NO of a New Pyridoxine Derivative B6NO
title Preparation, Antioxidant Properties and Ability to Increase Intracellular NO of a New Pyridoxine Derivative B6NO
title_full Preparation, Antioxidant Properties and Ability to Increase Intracellular NO of a New Pyridoxine Derivative B6NO
title_fullStr Preparation, Antioxidant Properties and Ability to Increase Intracellular NO of a New Pyridoxine Derivative B6NO
title_full_unstemmed Preparation, Antioxidant Properties and Ability to Increase Intracellular NO of a New Pyridoxine Derivative B6NO
title_short Preparation, Antioxidant Properties and Ability to Increase Intracellular NO of a New Pyridoxine Derivative B6NO
title_sort preparation, antioxidant properties and ability to increase intracellular no of a new pyridoxine derivative b6no
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8465670/
https://www.ncbi.nlm.nih.gov/pubmed/34573083
http://dx.doi.org/10.3390/antiox10091451
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