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The Influence of Cationic Nitrosyl Iron Complex with Penicillamine Ligands on Model Membranes, Membrane-Bound Enzymes and Lipid Peroxidation

This paper shows the biological effects of cationic binuclear tetranitrosyl iron complex with penicillamine ligands (TNIC–PA). Interaction with a model membrane was assessed using a fluorescent probes technique. Antioxidant activity was studied using a thiobarbituric acid reactive species assay (TBA...

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Autores principales: Poletaeva, Darya A., Soldatova, Yuliya V., Smolina, Anastasiya V., Savushkin, Maxim A., Klimanova, Elena N., Sanina, Nataliya A., Faingold, Irina I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694463/
https://www.ncbi.nlm.nih.gov/pubmed/36363643
http://dx.doi.org/10.3390/membranes12111088
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author Poletaeva, Darya A.
Soldatova, Yuliya V.
Smolina, Anastasiya V.
Savushkin, Maxim A.
Klimanova, Elena N.
Sanina, Nataliya A.
Faingold, Irina I.
author_facet Poletaeva, Darya A.
Soldatova, Yuliya V.
Smolina, Anastasiya V.
Savushkin, Maxim A.
Klimanova, Elena N.
Sanina, Nataliya A.
Faingold, Irina I.
author_sort Poletaeva, Darya A.
collection PubMed
description This paper shows the biological effects of cationic binuclear tetranitrosyl iron complex with penicillamine ligands (TNIC–PA). Interaction with a model membrane was assessed using a fluorescent probes technique. Antioxidant activity was studied using a thiobarbituric acid reactive species assay (TBARS) and a chemiluminescence assay. The catalytic activity of monoamine oxidase (MAO) was determined by measuring liberation of ammonia. Antiglycation activity was determined fluometrically by thermal glycation of albumine by D-glucose. The higher values of Stern–Volmer constants (K(SV)) obtained for the pyrene located in hydrophobic regions (3.9 × 10(4) M(−1)) compared to K(SV) obtained for eosin Y located in the polar headgroup region (0.9 × 10(4) M(−1)) confirms that TNIC–PA molecules prefer to be located in the hydrophobic acyl chain region, close to the glycerol group of lipid molecules. TNIC–PA effectively inhibited the process of spontaneous lipid peroxidation, due to additive contributions from releasing NO and penicillamine ligand (IC50 = 21.4 µM) and quenched luminol chemiluminescence (IC50 = 3.6 μM). High activity of TNIC–PA in both tests allows us to assume a significant role of its radical-scavenging activity in the realization of antioxidant activity. It was shown that TNIC–PA (50–1000 μM) selectively inhibits the membrane-bound enzyme MAO-A, a major source of ROS in the heart. In addition, TNIC–PA is an effective inhibitor of non-enzymatic protein glycation. Thus, the evaluated biological effects of TNIC–PA open up the possibility of its practical application in chemotherapy for socially significant diseases, especially cardiovascular diseases.
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spelling pubmed-96944632022-11-26 The Influence of Cationic Nitrosyl Iron Complex with Penicillamine Ligands on Model Membranes, Membrane-Bound Enzymes and Lipid Peroxidation Poletaeva, Darya A. Soldatova, Yuliya V. Smolina, Anastasiya V. Savushkin, Maxim A. Klimanova, Elena N. Sanina, Nataliya A. Faingold, Irina I. Membranes (Basel) Article This paper shows the biological effects of cationic binuclear tetranitrosyl iron complex with penicillamine ligands (TNIC–PA). Interaction with a model membrane was assessed using a fluorescent probes technique. Antioxidant activity was studied using a thiobarbituric acid reactive species assay (TBARS) and a chemiluminescence assay. The catalytic activity of monoamine oxidase (MAO) was determined by measuring liberation of ammonia. Antiglycation activity was determined fluometrically by thermal glycation of albumine by D-glucose. The higher values of Stern–Volmer constants (K(SV)) obtained for the pyrene located in hydrophobic regions (3.9 × 10(4) M(−1)) compared to K(SV) obtained for eosin Y located in the polar headgroup region (0.9 × 10(4) M(−1)) confirms that TNIC–PA molecules prefer to be located in the hydrophobic acyl chain region, close to the glycerol group of lipid molecules. TNIC–PA effectively inhibited the process of spontaneous lipid peroxidation, due to additive contributions from releasing NO and penicillamine ligand (IC50 = 21.4 µM) and quenched luminol chemiluminescence (IC50 = 3.6 μM). High activity of TNIC–PA in both tests allows us to assume a significant role of its radical-scavenging activity in the realization of antioxidant activity. It was shown that TNIC–PA (50–1000 μM) selectively inhibits the membrane-bound enzyme MAO-A, a major source of ROS in the heart. In addition, TNIC–PA is an effective inhibitor of non-enzymatic protein glycation. Thus, the evaluated biological effects of TNIC–PA open up the possibility of its practical application in chemotherapy for socially significant diseases, especially cardiovascular diseases. MDPI 2022-11-02 /pmc/articles/PMC9694463/ /pubmed/36363643 http://dx.doi.org/10.3390/membranes12111088 Text en © 2022 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
Poletaeva, Darya A.
Soldatova, Yuliya V.
Smolina, Anastasiya V.
Savushkin, Maxim A.
Klimanova, Elena N.
Sanina, Nataliya A.
Faingold, Irina I.
The Influence of Cationic Nitrosyl Iron Complex with Penicillamine Ligands on Model Membranes, Membrane-Bound Enzymes and Lipid Peroxidation
title The Influence of Cationic Nitrosyl Iron Complex with Penicillamine Ligands on Model Membranes, Membrane-Bound Enzymes and Lipid Peroxidation
title_full The Influence of Cationic Nitrosyl Iron Complex with Penicillamine Ligands on Model Membranes, Membrane-Bound Enzymes and Lipid Peroxidation
title_fullStr The Influence of Cationic Nitrosyl Iron Complex with Penicillamine Ligands on Model Membranes, Membrane-Bound Enzymes and Lipid Peroxidation
title_full_unstemmed The Influence of Cationic Nitrosyl Iron Complex with Penicillamine Ligands on Model Membranes, Membrane-Bound Enzymes and Lipid Peroxidation
title_short The Influence of Cationic Nitrosyl Iron Complex with Penicillamine Ligands on Model Membranes, Membrane-Bound Enzymes and Lipid Peroxidation
title_sort influence of cationic nitrosyl iron complex with penicillamine ligands on model membranes, membrane-bound enzymes and lipid peroxidation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694463/
https://www.ncbi.nlm.nih.gov/pubmed/36363643
http://dx.doi.org/10.3390/membranes12111088
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