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Phytosynthesis of Biological Active Silver Nanoparticles Using Echinacea purpurea L. Extracts

With their phytoconstituents acting as reducing and capping agents, natural extracts can be considered a viable alternative for the obtaining of metallic nanoparticles. The properties of phytosynthesized nanoparticles are dependent upon size and morphology, which, in turn, can be tailored by adjusti...

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Autores principales: Fierascu, Ioana Catalina, Fierascu, Irina, Baroi, Anda Maria, Ungureanu, Camelia, Ortan, Alina, Avramescu, Sorin Marius, Somoghi, Raluca, Fierascu, Radu Claudiu, Dinu-Parvu, Cristina Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9609611/
https://www.ncbi.nlm.nih.gov/pubmed/36295404
http://dx.doi.org/10.3390/ma15207327
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author Fierascu, Ioana Catalina
Fierascu, Irina
Baroi, Anda Maria
Ungureanu, Camelia
Ortan, Alina
Avramescu, Sorin Marius
Somoghi, Raluca
Fierascu, Radu Claudiu
Dinu-Parvu, Cristina Elena
author_facet Fierascu, Ioana Catalina
Fierascu, Irina
Baroi, Anda Maria
Ungureanu, Camelia
Ortan, Alina
Avramescu, Sorin Marius
Somoghi, Raluca
Fierascu, Radu Claudiu
Dinu-Parvu, Cristina Elena
author_sort Fierascu, Ioana Catalina
collection PubMed
description With their phytoconstituents acting as reducing and capping agents, natural extracts can be considered a viable alternative for the obtaining of metallic nanoparticles. The properties of phytosynthesized nanoparticles are dependent upon size and morphology, which, in turn, can be tailored by adjusting different parameters of the phytosynthesis process (such as the extracts’ composition). In the present study, we aimed to evaluate, for the first time in the literature, the influence of the extraction method and extract concentration on the morphological and biological properties (antioxidant and antibacterial activity) of silver nanoparticles phytosynthesized using Echinacea pupurea L. extracts. The obtained results revealed that the use of the low-concentration Echinacea hydro-alcoholic extract obtained via classical temperature extraction led to the development of nanoparticles with the smallest dimensions (less than 10 nm), compared with the use of extracts obtained with higher concentrations and the extract obtained via the microwave method. The developed nanomaterials exhibited enhanced antioxidant effects (determined via the DPPH assay) and antimicrobial properties (against Escherichia coli and Candida albicans), compared with the parent extracts.
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spelling pubmed-96096112022-10-28 Phytosynthesis of Biological Active Silver Nanoparticles Using Echinacea purpurea L. Extracts Fierascu, Ioana Catalina Fierascu, Irina Baroi, Anda Maria Ungureanu, Camelia Ortan, Alina Avramescu, Sorin Marius Somoghi, Raluca Fierascu, Radu Claudiu Dinu-Parvu, Cristina Elena Materials (Basel) Article With their phytoconstituents acting as reducing and capping agents, natural extracts can be considered a viable alternative for the obtaining of metallic nanoparticles. The properties of phytosynthesized nanoparticles are dependent upon size and morphology, which, in turn, can be tailored by adjusting different parameters of the phytosynthesis process (such as the extracts’ composition). In the present study, we aimed to evaluate, for the first time in the literature, the influence of the extraction method and extract concentration on the morphological and biological properties (antioxidant and antibacterial activity) of silver nanoparticles phytosynthesized using Echinacea pupurea L. extracts. The obtained results revealed that the use of the low-concentration Echinacea hydro-alcoholic extract obtained via classical temperature extraction led to the development of nanoparticles with the smallest dimensions (less than 10 nm), compared with the use of extracts obtained with higher concentrations and the extract obtained via the microwave method. The developed nanomaterials exhibited enhanced antioxidant effects (determined via the DPPH assay) and antimicrobial properties (against Escherichia coli and Candida albicans), compared with the parent extracts. MDPI 2022-10-20 /pmc/articles/PMC9609611/ /pubmed/36295404 http://dx.doi.org/10.3390/ma15207327 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
Fierascu, Ioana Catalina
Fierascu, Irina
Baroi, Anda Maria
Ungureanu, Camelia
Ortan, Alina
Avramescu, Sorin Marius
Somoghi, Raluca
Fierascu, Radu Claudiu
Dinu-Parvu, Cristina Elena
Phytosynthesis of Biological Active Silver Nanoparticles Using Echinacea purpurea L. Extracts
title Phytosynthesis of Biological Active Silver Nanoparticles Using Echinacea purpurea L. Extracts
title_full Phytosynthesis of Biological Active Silver Nanoparticles Using Echinacea purpurea L. Extracts
title_fullStr Phytosynthesis of Biological Active Silver Nanoparticles Using Echinacea purpurea L. Extracts
title_full_unstemmed Phytosynthesis of Biological Active Silver Nanoparticles Using Echinacea purpurea L. Extracts
title_short Phytosynthesis of Biological Active Silver Nanoparticles Using Echinacea purpurea L. Extracts
title_sort phytosynthesis of biological active silver nanoparticles using echinacea purpurea l. extracts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9609611/
https://www.ncbi.nlm.nih.gov/pubmed/36295404
http://dx.doi.org/10.3390/ma15207327
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