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Chelation of Zinc with Biogenic Amino Acids: Description of Properties Using Balaban Index, Assessment of Biological Activity on Spirostomum Ambiguum Cellular Biosensor, Influence on Biofilms and Direct Antibacterial Action

The complexation of biogenic molecules with metals is the widespread strategy in screening for new pharmaceuticals with improved therapeutic and physicochemical properties. This paper demonstrates the possibility of using simple QSAR modeling based on topological descriptors for chelates study. The...

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Autores principales: Marukhlenko, Alla V., Morozova, Mariya A., Mbarga, Arsène M. J., Antipova, Nadezhda V., Syroeshkin, Anton V., Podoprigora, Irina V., Maksimova, Tatiana V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9415815/
https://www.ncbi.nlm.nih.gov/pubmed/36015127
http://dx.doi.org/10.3390/ph15080979
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author Marukhlenko, Alla V.
Morozova, Mariya A.
Mbarga, Arsène M. J.
Antipova, Nadezhda V.
Syroeshkin, Anton V.
Podoprigora, Irina V.
Maksimova, Tatiana V.
author_facet Marukhlenko, Alla V.
Morozova, Mariya A.
Mbarga, Arsène M. J.
Antipova, Nadezhda V.
Syroeshkin, Anton V.
Podoprigora, Irina V.
Maksimova, Tatiana V.
author_sort Marukhlenko, Alla V.
collection PubMed
description The complexation of biogenic molecules with metals is the widespread strategy in screening for new pharmaceuticals with improved therapeutic and physicochemical properties. This paper demonstrates the possibility of using simple QSAR modeling based on topological descriptors for chelates study. The presence of a relationship between the structure (J) and lipophilic properties (logP) of zinc complexes with amino acids, where two molecules coordinate the central atom through carboxyl oxygen and amino group nitrogen, and thus form a double ring structure, was predicted. Using a cellular biosensor model for Gly, Ala, Met, Val, Phe and their complexes Zn(AA)(2), we experimentally confirmed the existence of a direct relationship between logP and biological activity (Ea). The results obtained using topological analysis, Spirotox method and microbiological testing allowed us to assume and prove that the chelate complex of zinc with methionine has the highest activity of inhibiting bacterial biofilms, while in aqueous solutions it does not reveal direct antibacterial effect.
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spelling pubmed-94158152022-08-27 Chelation of Zinc with Biogenic Amino Acids: Description of Properties Using Balaban Index, Assessment of Biological Activity on Spirostomum Ambiguum Cellular Biosensor, Influence on Biofilms and Direct Antibacterial Action Marukhlenko, Alla V. Morozova, Mariya A. Mbarga, Arsène M. J. Antipova, Nadezhda V. Syroeshkin, Anton V. Podoprigora, Irina V. Maksimova, Tatiana V. Pharmaceuticals (Basel) Article The complexation of biogenic molecules with metals is the widespread strategy in screening for new pharmaceuticals with improved therapeutic and physicochemical properties. This paper demonstrates the possibility of using simple QSAR modeling based on topological descriptors for chelates study. The presence of a relationship between the structure (J) and lipophilic properties (logP) of zinc complexes with amino acids, where two molecules coordinate the central atom through carboxyl oxygen and amino group nitrogen, and thus form a double ring structure, was predicted. Using a cellular biosensor model for Gly, Ala, Met, Val, Phe and their complexes Zn(AA)(2), we experimentally confirmed the existence of a direct relationship between logP and biological activity (Ea). The results obtained using topological analysis, Spirotox method and microbiological testing allowed us to assume and prove that the chelate complex of zinc with methionine has the highest activity of inhibiting bacterial biofilms, while in aqueous solutions it does not reveal direct antibacterial effect. MDPI 2022-08-09 /pmc/articles/PMC9415815/ /pubmed/36015127 http://dx.doi.org/10.3390/ph15080979 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
Marukhlenko, Alla V.
Morozova, Mariya A.
Mbarga, Arsène M. J.
Antipova, Nadezhda V.
Syroeshkin, Anton V.
Podoprigora, Irina V.
Maksimova, Tatiana V.
Chelation of Zinc with Biogenic Amino Acids: Description of Properties Using Balaban Index, Assessment of Biological Activity on Spirostomum Ambiguum Cellular Biosensor, Influence on Biofilms and Direct Antibacterial Action
title Chelation of Zinc with Biogenic Amino Acids: Description of Properties Using Balaban Index, Assessment of Biological Activity on Spirostomum Ambiguum Cellular Biosensor, Influence on Biofilms and Direct Antibacterial Action
title_full Chelation of Zinc with Biogenic Amino Acids: Description of Properties Using Balaban Index, Assessment of Biological Activity on Spirostomum Ambiguum Cellular Biosensor, Influence on Biofilms and Direct Antibacterial Action
title_fullStr Chelation of Zinc with Biogenic Amino Acids: Description of Properties Using Balaban Index, Assessment of Biological Activity on Spirostomum Ambiguum Cellular Biosensor, Influence on Biofilms and Direct Antibacterial Action
title_full_unstemmed Chelation of Zinc with Biogenic Amino Acids: Description of Properties Using Balaban Index, Assessment of Biological Activity on Spirostomum Ambiguum Cellular Biosensor, Influence on Biofilms and Direct Antibacterial Action
title_short Chelation of Zinc with Biogenic Amino Acids: Description of Properties Using Balaban Index, Assessment of Biological Activity on Spirostomum Ambiguum Cellular Biosensor, Influence on Biofilms and Direct Antibacterial Action
title_sort chelation of zinc with biogenic amino acids: description of properties using balaban index, assessment of biological activity on spirostomum ambiguum cellular biosensor, influence on biofilms and direct antibacterial action
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9415815/
https://www.ncbi.nlm.nih.gov/pubmed/36015127
http://dx.doi.org/10.3390/ph15080979
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