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Spontaneous Transformation of Biomedical Polymeric Silver Salt into a Nanocomposite: Physical–Chemical and Antimicrobial Properties Dramatically Depend on the Initial Preparation State

An antimicrobial polyacrylic silver salt (freshly prepared, stored for one year and model-aged) was studied by physical–chemical techniques for nanoparticle detection. In all cases, this salt represents a composite of radical-enriched macromolecules and silver(0) nanoparticles. As time passed, the i...

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Autores principales: Abzaeva, Klavdia A., Sukhov, Boris G., Khutsishvili, Spartak S., Tarabukina, Elena B., Zelenkov, Lev E., Nevezhina, Anna V., Fadeeva, Tat’yana V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9501147/
https://www.ncbi.nlm.nih.gov/pubmed/36142870
http://dx.doi.org/10.3390/ijms231810963
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author Abzaeva, Klavdia A.
Sukhov, Boris G.
Khutsishvili, Spartak S.
Tarabukina, Elena B.
Zelenkov, Lev E.
Nevezhina, Anna V.
Fadeeva, Tat’yana V.
author_facet Abzaeva, Klavdia A.
Sukhov, Boris G.
Khutsishvili, Spartak S.
Tarabukina, Elena B.
Zelenkov, Lev E.
Nevezhina, Anna V.
Fadeeva, Tat’yana V.
author_sort Abzaeva, Klavdia A.
collection PubMed
description An antimicrobial polyacrylic silver salt (freshly prepared, stored for one year and model-aged) was studied by physical–chemical techniques for nanoparticle detection. In all cases, this salt represents a composite of radical-enriched macromolecules and silver(0) nanoparticles. As time passed, the initial small spherical nanoparticles were converted into larger non-spherical silver nanoparticles. The initial highly water-soluble antimicrobial solid nanocomposite almost loses its solubility in water and cannot be used as an antimicrobial agent. Unlike insoluble solid silver polyacrylate, its freshly prepared aqueous solution retains a liquid-phase consistency after one year as well as pronounced antimicrobial properties. The mechanism of these spontaneous and model-simulated processes was proposed. These results have attracted attention for officinal biomedicinal silver salts as complex radical-enriched nanocomposite substances; they also indicate contrasting effects of silver polymeric salt storing in solid and solution forms that dramatically influence antimicrobial activity.
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spelling pubmed-95011472022-09-24 Spontaneous Transformation of Biomedical Polymeric Silver Salt into a Nanocomposite: Physical–Chemical and Antimicrobial Properties Dramatically Depend on the Initial Preparation State Abzaeva, Klavdia A. Sukhov, Boris G. Khutsishvili, Spartak S. Tarabukina, Elena B. Zelenkov, Lev E. Nevezhina, Anna V. Fadeeva, Tat’yana V. Int J Mol Sci Article An antimicrobial polyacrylic silver salt (freshly prepared, stored for one year and model-aged) was studied by physical–chemical techniques for nanoparticle detection. In all cases, this salt represents a composite of radical-enriched macromolecules and silver(0) nanoparticles. As time passed, the initial small spherical nanoparticles were converted into larger non-spherical silver nanoparticles. The initial highly water-soluble antimicrobial solid nanocomposite almost loses its solubility in water and cannot be used as an antimicrobial agent. Unlike insoluble solid silver polyacrylate, its freshly prepared aqueous solution retains a liquid-phase consistency after one year as well as pronounced antimicrobial properties. The mechanism of these spontaneous and model-simulated processes was proposed. These results have attracted attention for officinal biomedicinal silver salts as complex radical-enriched nanocomposite substances; they also indicate contrasting effects of silver polymeric salt storing in solid and solution forms that dramatically influence antimicrobial activity. MDPI 2022-09-19 /pmc/articles/PMC9501147/ /pubmed/36142870 http://dx.doi.org/10.3390/ijms231810963 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
Abzaeva, Klavdia A.
Sukhov, Boris G.
Khutsishvili, Spartak S.
Tarabukina, Elena B.
Zelenkov, Lev E.
Nevezhina, Anna V.
Fadeeva, Tat’yana V.
Spontaneous Transformation of Biomedical Polymeric Silver Salt into a Nanocomposite: Physical–Chemical and Antimicrobial Properties Dramatically Depend on the Initial Preparation State
title Spontaneous Transformation of Biomedical Polymeric Silver Salt into a Nanocomposite: Physical–Chemical and Antimicrobial Properties Dramatically Depend on the Initial Preparation State
title_full Spontaneous Transformation of Biomedical Polymeric Silver Salt into a Nanocomposite: Physical–Chemical and Antimicrobial Properties Dramatically Depend on the Initial Preparation State
title_fullStr Spontaneous Transformation of Biomedical Polymeric Silver Salt into a Nanocomposite: Physical–Chemical and Antimicrobial Properties Dramatically Depend on the Initial Preparation State
title_full_unstemmed Spontaneous Transformation of Biomedical Polymeric Silver Salt into a Nanocomposite: Physical–Chemical and Antimicrobial Properties Dramatically Depend on the Initial Preparation State
title_short Spontaneous Transformation of Biomedical Polymeric Silver Salt into a Nanocomposite: Physical–Chemical and Antimicrobial Properties Dramatically Depend on the Initial Preparation State
title_sort spontaneous transformation of biomedical polymeric silver salt into a nanocomposite: physical–chemical and antimicrobial properties dramatically depend on the initial preparation state
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9501147/
https://www.ncbi.nlm.nih.gov/pubmed/36142870
http://dx.doi.org/10.3390/ijms231810963
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