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Citrate-silver nanoparticles and their impact on some environmental beneficial fungi

Colloidal suspensions of silver nanoparticles (AgNPs) with surface modified by capping with citrate ions were synthesized by chemical reduction method. Transmission and Scanning Electron Microscopy as well as darkfield Optical Microscopy provided information on the nanoparticle morphology, with fine...

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Autores principales: Oprica, Lacramioara, Andries, Maria, Sacarescu, Liviu, Popescu, Larisa, Pricop, Daniela, Creanga, Dorina, Balasoiu, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715440/
https://www.ncbi.nlm.nih.gov/pubmed/33304144
http://dx.doi.org/10.1016/j.sjbs.2020.09.004
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author Oprica, Lacramioara
Andries, Maria
Sacarescu, Liviu
Popescu, Larisa
Pricop, Daniela
Creanga, Dorina
Balasoiu, Maria
author_facet Oprica, Lacramioara
Andries, Maria
Sacarescu, Liviu
Popescu, Larisa
Pricop, Daniela
Creanga, Dorina
Balasoiu, Maria
author_sort Oprica, Lacramioara
collection PubMed
description Colloidal suspensions of silver nanoparticles (AgNPs) with surface modified by capping with citrate ions were synthesized by chemical reduction method. Transmission and Scanning Electron Microscopy as well as darkfield Optical Microscopy provided information on the nanoparticle morphology, with fine symmetrical grains and log-normal fitted size distribution. Small Angle X-ray Scattering method allowed theoretical confirmation of colloidal silver nanoparticle fine granularity, based on measurements in the native fluid sample. UV–Vis spectrophotometry allowed studying the Localized Surface Plasmon Resonance band versus the stability of the citrate-AgNP sample after storage and after UV-C exposure. The colloidal AgNP impact on Phanerochaete chrysosporium environmental microorganisms was studied by specific biochemical investigations. Silver released from the colloidal suspension of AgNPs was supposed to induce changes in some antioxidant enzymes and in some enzymes of Krebs’ cycle. Catalase activity was moderately changed (an increase with over 50%) as well as superoxide dismutase activity, while the diminution of the activities of four dehydrogenases synthesized in the fungus mycelium was emphasized also: a decrease with about 60% for malate dehydrogenase, with over 50% for isocitrate dehydrogenase and succinate dehydrogenase and with about 40% for alpha-ketoglutarate dehydrogenase. These findings suggested the nano-toxicological issues of citrate-AgNPs impact on the environmental beneficial microorganisms.
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spelling pubmed-77154402020-12-09 Citrate-silver nanoparticles and their impact on some environmental beneficial fungi Oprica, Lacramioara Andries, Maria Sacarescu, Liviu Popescu, Larisa Pricop, Daniela Creanga, Dorina Balasoiu, Maria Saudi J Biol Sci Original Article Colloidal suspensions of silver nanoparticles (AgNPs) with surface modified by capping with citrate ions were synthesized by chemical reduction method. Transmission and Scanning Electron Microscopy as well as darkfield Optical Microscopy provided information on the nanoparticle morphology, with fine symmetrical grains and log-normal fitted size distribution. Small Angle X-ray Scattering method allowed theoretical confirmation of colloidal silver nanoparticle fine granularity, based on measurements in the native fluid sample. UV–Vis spectrophotometry allowed studying the Localized Surface Plasmon Resonance band versus the stability of the citrate-AgNP sample after storage and after UV-C exposure. The colloidal AgNP impact on Phanerochaete chrysosporium environmental microorganisms was studied by specific biochemical investigations. Silver released from the colloidal suspension of AgNPs was supposed to induce changes in some antioxidant enzymes and in some enzymes of Krebs’ cycle. Catalase activity was moderately changed (an increase with over 50%) as well as superoxide dismutase activity, while the diminution of the activities of four dehydrogenases synthesized in the fungus mycelium was emphasized also: a decrease with about 60% for malate dehydrogenase, with over 50% for isocitrate dehydrogenase and succinate dehydrogenase and with about 40% for alpha-ketoglutarate dehydrogenase. These findings suggested the nano-toxicological issues of citrate-AgNPs impact on the environmental beneficial microorganisms. Elsevier 2020-12 2020-09-15 /pmc/articles/PMC7715440/ /pubmed/33304144 http://dx.doi.org/10.1016/j.sjbs.2020.09.004 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Oprica, Lacramioara
Andries, Maria
Sacarescu, Liviu
Popescu, Larisa
Pricop, Daniela
Creanga, Dorina
Balasoiu, Maria
Citrate-silver nanoparticles and their impact on some environmental beneficial fungi
title Citrate-silver nanoparticles and their impact on some environmental beneficial fungi
title_full Citrate-silver nanoparticles and their impact on some environmental beneficial fungi
title_fullStr Citrate-silver nanoparticles and their impact on some environmental beneficial fungi
title_full_unstemmed Citrate-silver nanoparticles and their impact on some environmental beneficial fungi
title_short Citrate-silver nanoparticles and their impact on some environmental beneficial fungi
title_sort citrate-silver nanoparticles and their impact on some environmental beneficial fungi
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715440/
https://www.ncbi.nlm.nih.gov/pubmed/33304144
http://dx.doi.org/10.1016/j.sjbs.2020.09.004
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