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Increased Antibacterial and Antibiofilm Properties of Silver Nanoparticles Using Silver Fluoride as Precursor

Silver nanoparticles were produced with AgF as the starting Ag(I) salt, with pectin as the reductant and protecting agent. While the obtained nanoparticles (pAgNP-F) have the same dimensional and physicochemical properties as those already described by us and obtained from AgNO(3) and pectin (pAgNP-...

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Autores principales: Bertoglio, Federico, De Vita, Lorenzo, D’Agostino, Agnese, Diaz Fernandez, Yuri, Falqui, Andrea, Casu, Alberto, Merli, Daniele, Milanese, Chiara, Rossi, Silvia, Taglietti, Angelo, Visai, Livia, Pallavicini, Piersandro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7436145/
https://www.ncbi.nlm.nih.gov/pubmed/32751978
http://dx.doi.org/10.3390/molecules25153494
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author Bertoglio, Federico
De Vita, Lorenzo
D’Agostino, Agnese
Diaz Fernandez, Yuri
Falqui, Andrea
Casu, Alberto
Merli, Daniele
Milanese, Chiara
Rossi, Silvia
Taglietti, Angelo
Visai, Livia
Pallavicini, Piersandro
author_facet Bertoglio, Federico
De Vita, Lorenzo
D’Agostino, Agnese
Diaz Fernandez, Yuri
Falqui, Andrea
Casu, Alberto
Merli, Daniele
Milanese, Chiara
Rossi, Silvia
Taglietti, Angelo
Visai, Livia
Pallavicini, Piersandro
author_sort Bertoglio, Federico
collection PubMed
description Silver nanoparticles were produced with AgF as the starting Ag(I) salt, with pectin as the reductant and protecting agent. While the obtained nanoparticles (pAgNP-F) have the same dimensional and physicochemical properties as those already described by us and obtained from AgNO(3) and pectin (pAgNP-N), the silver nanoparticles from AgF display an increased antibacterial activity against E. coli PHL628 and Staphylococcus epidermidis RP62A (S. epidermidis RP62A), both as planktonic strains and as their biofilms with respect to pAgNP-N. In particular, a comparison of the antimicrobial and antibiofilm action of pAgNP-F has been carried out with pAgNP-N, pAgNP-N and added NaF, pure AgNO(3), pure AgF, AgNO(3) and added NaF and pure NaNO(3) and NaF salts. By also measuring the concentration of the Ag(+) cation released by pAgNP-F and pAgNP-N, we were able to unravel the separate contributions of each potential antibacterial agent, observing an evident synergy between p-AgNP and the F(−) anion: the F(−) anion increases the antibacterial power of the p-AgNP solutions even when F(−) is just 10 µM, a concentration at which F(−) alone (i.e., as its Na(+) salt) is completely ineffective.
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spelling pubmed-74361452020-08-24 Increased Antibacterial and Antibiofilm Properties of Silver Nanoparticles Using Silver Fluoride as Precursor Bertoglio, Federico De Vita, Lorenzo D’Agostino, Agnese Diaz Fernandez, Yuri Falqui, Andrea Casu, Alberto Merli, Daniele Milanese, Chiara Rossi, Silvia Taglietti, Angelo Visai, Livia Pallavicini, Piersandro Molecules Article Silver nanoparticles were produced with AgF as the starting Ag(I) salt, with pectin as the reductant and protecting agent. While the obtained nanoparticles (pAgNP-F) have the same dimensional and physicochemical properties as those already described by us and obtained from AgNO(3) and pectin (pAgNP-N), the silver nanoparticles from AgF display an increased antibacterial activity against E. coli PHL628 and Staphylococcus epidermidis RP62A (S. epidermidis RP62A), both as planktonic strains and as their biofilms with respect to pAgNP-N. In particular, a comparison of the antimicrobial and antibiofilm action of pAgNP-F has been carried out with pAgNP-N, pAgNP-N and added NaF, pure AgNO(3), pure AgF, AgNO(3) and added NaF and pure NaNO(3) and NaF salts. By also measuring the concentration of the Ag(+) cation released by pAgNP-F and pAgNP-N, we were able to unravel the separate contributions of each potential antibacterial agent, observing an evident synergy between p-AgNP and the F(−) anion: the F(−) anion increases the antibacterial power of the p-AgNP solutions even when F(−) is just 10 µM, a concentration at which F(−) alone (i.e., as its Na(+) salt) is completely ineffective. MDPI 2020-07-31 /pmc/articles/PMC7436145/ /pubmed/32751978 http://dx.doi.org/10.3390/molecules25153494 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bertoglio, Federico
De Vita, Lorenzo
D’Agostino, Agnese
Diaz Fernandez, Yuri
Falqui, Andrea
Casu, Alberto
Merli, Daniele
Milanese, Chiara
Rossi, Silvia
Taglietti, Angelo
Visai, Livia
Pallavicini, Piersandro
Increased Antibacterial and Antibiofilm Properties of Silver Nanoparticles Using Silver Fluoride as Precursor
title Increased Antibacterial and Antibiofilm Properties of Silver Nanoparticles Using Silver Fluoride as Precursor
title_full Increased Antibacterial and Antibiofilm Properties of Silver Nanoparticles Using Silver Fluoride as Precursor
title_fullStr Increased Antibacterial and Antibiofilm Properties of Silver Nanoparticles Using Silver Fluoride as Precursor
title_full_unstemmed Increased Antibacterial and Antibiofilm Properties of Silver Nanoparticles Using Silver Fluoride as Precursor
title_short Increased Antibacterial and Antibiofilm Properties of Silver Nanoparticles Using Silver Fluoride as Precursor
title_sort increased antibacterial and antibiofilm properties of silver nanoparticles using silver fluoride as precursor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7436145/
https://www.ncbi.nlm.nih.gov/pubmed/32751978
http://dx.doi.org/10.3390/molecules25153494
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