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Hybrids of Sterically Hindered Phenols and Diaryl Ureas: Synthesis, Switch from Antioxidant Activity to ROS Generation and Induction of Apoptosis

The utility of sterically hindered phenols (SHPs) in drug design is based on their chameleonic ability to switch from an antioxidant that can protect healthy tissues to highly cytotoxic species that can target tumor cells. This work explores the biological activity of a family of 45 new hybrid molec...

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Autores principales: Gibadullina, Elmira, Neganova, Margarita, Aleksandrova, Yulia, Nguyen, Hoang Bao Tran, Voloshina, Alexandra, Khrizanforov, Mikhail, Nguyen, Thi Thu, Vinyukova, Ekaterina, Volcho, Konstantin, Tsypyshev, Dmitry, Lyubina, Anna, Amerhanova, Syumbelya, Strelnik, Anna, Voronina, Julia, Islamov, Daut, Zhapparbergenov, Rakhmetulla, Appazov, Nurbol, Chabuka, Beauty, Christopher, Kimberley, Burilov, Alexander, Salakhutdinov, Nariman, Sinyashin, Oleg, Alabugin, Igor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10454409/
https://www.ncbi.nlm.nih.gov/pubmed/37628818
http://dx.doi.org/10.3390/ijms241612637
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author Gibadullina, Elmira
Neganova, Margarita
Aleksandrova, Yulia
Nguyen, Hoang Bao Tran
Voloshina, Alexandra
Khrizanforov, Mikhail
Nguyen, Thi Thu
Vinyukova, Ekaterina
Volcho, Konstantin
Tsypyshev, Dmitry
Lyubina, Anna
Amerhanova, Syumbelya
Strelnik, Anna
Voronina, Julia
Islamov, Daut
Zhapparbergenov, Rakhmetulla
Appazov, Nurbol
Chabuka, Beauty
Christopher, Kimberley
Burilov, Alexander
Salakhutdinov, Nariman
Sinyashin, Oleg
Alabugin, Igor
author_facet Gibadullina, Elmira
Neganova, Margarita
Aleksandrova, Yulia
Nguyen, Hoang Bao Tran
Voloshina, Alexandra
Khrizanforov, Mikhail
Nguyen, Thi Thu
Vinyukova, Ekaterina
Volcho, Konstantin
Tsypyshev, Dmitry
Lyubina, Anna
Amerhanova, Syumbelya
Strelnik, Anna
Voronina, Julia
Islamov, Daut
Zhapparbergenov, Rakhmetulla
Appazov, Nurbol
Chabuka, Beauty
Christopher, Kimberley
Burilov, Alexander
Salakhutdinov, Nariman
Sinyashin, Oleg
Alabugin, Igor
author_sort Gibadullina, Elmira
collection PubMed
description The utility of sterically hindered phenols (SHPs) in drug design is based on their chameleonic ability to switch from an antioxidant that can protect healthy tissues to highly cytotoxic species that can target tumor cells. This work explores the biological activity of a family of 45 new hybrid molecules that combine SHPs equipped with an activating phosphonate moiety at the benzylic position with additional urea/thiourea fragments. The target compounds were synthesized by reaction of iso(thio)cyanates with C-arylphosphorylated phenols containing pendant 2,6-diaminopyridine and 1,3-diaminobenzene moieties. The SHP/urea hybrids display cytotoxic activity against a number of tumor lines. Mechanistic studies confirm the paradoxical nature of these substances which combine pronounced antioxidant properties in radical trapping assays with increased reactive oxygen species generation in tumor cells. Moreover, the most cytotoxic compounds inhibited the process of glycolysis in SH-SY5Y cells and caused pronounced dissipation of the mitochondrial membrane of isolated rat liver mitochondria. Molecular docking of the most active compounds identified the activator allosteric center of pyruvate kinase M2 as one of the possible targets. For the most promising compounds, 11b and 17b, this combination of properties results in the ability to induce apoptosis in HuTu 80 cells along the intrinsic mitochondrial pathway. Cyclic voltammetry studies reveal complex redox behavior which can be simplified by addition of a large excess of acid that can protect some of the oxidizable groups by protonations. Interestingly, the re-reduction behavior of the oxidized species shows considerable variations, indicating different degrees of reversibility. Such reversibility (or quasi-reversibility) suggests that the shift of the phenol-quinone equilibrium toward the original phenol at the lower pH may be associated with lower cytotoxicity.
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spelling pubmed-104544092023-08-26 Hybrids of Sterically Hindered Phenols and Diaryl Ureas: Synthesis, Switch from Antioxidant Activity to ROS Generation and Induction of Apoptosis Gibadullina, Elmira Neganova, Margarita Aleksandrova, Yulia Nguyen, Hoang Bao Tran Voloshina, Alexandra Khrizanforov, Mikhail Nguyen, Thi Thu Vinyukova, Ekaterina Volcho, Konstantin Tsypyshev, Dmitry Lyubina, Anna Amerhanova, Syumbelya Strelnik, Anna Voronina, Julia Islamov, Daut Zhapparbergenov, Rakhmetulla Appazov, Nurbol Chabuka, Beauty Christopher, Kimberley Burilov, Alexander Salakhutdinov, Nariman Sinyashin, Oleg Alabugin, Igor Int J Mol Sci Article The utility of sterically hindered phenols (SHPs) in drug design is based on their chameleonic ability to switch from an antioxidant that can protect healthy tissues to highly cytotoxic species that can target tumor cells. This work explores the biological activity of a family of 45 new hybrid molecules that combine SHPs equipped with an activating phosphonate moiety at the benzylic position with additional urea/thiourea fragments. The target compounds were synthesized by reaction of iso(thio)cyanates with C-arylphosphorylated phenols containing pendant 2,6-diaminopyridine and 1,3-diaminobenzene moieties. The SHP/urea hybrids display cytotoxic activity against a number of tumor lines. Mechanistic studies confirm the paradoxical nature of these substances which combine pronounced antioxidant properties in radical trapping assays with increased reactive oxygen species generation in tumor cells. Moreover, the most cytotoxic compounds inhibited the process of glycolysis in SH-SY5Y cells and caused pronounced dissipation of the mitochondrial membrane of isolated rat liver mitochondria. Molecular docking of the most active compounds identified the activator allosteric center of pyruvate kinase M2 as one of the possible targets. For the most promising compounds, 11b and 17b, this combination of properties results in the ability to induce apoptosis in HuTu 80 cells along the intrinsic mitochondrial pathway. Cyclic voltammetry studies reveal complex redox behavior which can be simplified by addition of a large excess of acid that can protect some of the oxidizable groups by protonations. Interestingly, the re-reduction behavior of the oxidized species shows considerable variations, indicating different degrees of reversibility. Such reversibility (or quasi-reversibility) suggests that the shift of the phenol-quinone equilibrium toward the original phenol at the lower pH may be associated with lower cytotoxicity. MDPI 2023-08-10 /pmc/articles/PMC10454409/ /pubmed/37628818 http://dx.doi.org/10.3390/ijms241612637 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
Gibadullina, Elmira
Neganova, Margarita
Aleksandrova, Yulia
Nguyen, Hoang Bao Tran
Voloshina, Alexandra
Khrizanforov, Mikhail
Nguyen, Thi Thu
Vinyukova, Ekaterina
Volcho, Konstantin
Tsypyshev, Dmitry
Lyubina, Anna
Amerhanova, Syumbelya
Strelnik, Anna
Voronina, Julia
Islamov, Daut
Zhapparbergenov, Rakhmetulla
Appazov, Nurbol
Chabuka, Beauty
Christopher, Kimberley
Burilov, Alexander
Salakhutdinov, Nariman
Sinyashin, Oleg
Alabugin, Igor
Hybrids of Sterically Hindered Phenols and Diaryl Ureas: Synthesis, Switch from Antioxidant Activity to ROS Generation and Induction of Apoptosis
title Hybrids of Sterically Hindered Phenols and Diaryl Ureas: Synthesis, Switch from Antioxidant Activity to ROS Generation and Induction of Apoptosis
title_full Hybrids of Sterically Hindered Phenols and Diaryl Ureas: Synthesis, Switch from Antioxidant Activity to ROS Generation and Induction of Apoptosis
title_fullStr Hybrids of Sterically Hindered Phenols and Diaryl Ureas: Synthesis, Switch from Antioxidant Activity to ROS Generation and Induction of Apoptosis
title_full_unstemmed Hybrids of Sterically Hindered Phenols and Diaryl Ureas: Synthesis, Switch from Antioxidant Activity to ROS Generation and Induction of Apoptosis
title_short Hybrids of Sterically Hindered Phenols and Diaryl Ureas: Synthesis, Switch from Antioxidant Activity to ROS Generation and Induction of Apoptosis
title_sort hybrids of sterically hindered phenols and diaryl ureas: synthesis, switch from antioxidant activity to ros generation and induction of apoptosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10454409/
https://www.ncbi.nlm.nih.gov/pubmed/37628818
http://dx.doi.org/10.3390/ijms241612637
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