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Innovative Antimicrobial Chitosan/ZnO/Ag NPs/Citronella Essential Oil Nanocomposite—Potential Coating for Grapes

New packaging materials based on biopolymers are gaining increasing attention due to many advantages like biodegradability or existence of renewable sources. Grouping more antimicrobials agents in the same packaging can create a synergic effect, resulting in either a better antimicrobial activity ag...

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Autores principales: Motelica, Ludmila, Ficai, Denisa, Ficai, Anton, Truşcă, Roxana-Doina, Ilie, Cornelia-Ioana, Oprea, Ovidiu-Cristian, Andronescu, Ecaterina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7761909/
https://www.ncbi.nlm.nih.gov/pubmed/33291604
http://dx.doi.org/10.3390/foods9121801
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author Motelica, Ludmila
Ficai, Denisa
Ficai, Anton
Truşcă, Roxana-Doina
Ilie, Cornelia-Ioana
Oprea, Ovidiu-Cristian
Andronescu, Ecaterina
author_facet Motelica, Ludmila
Ficai, Denisa
Ficai, Anton
Truşcă, Roxana-Doina
Ilie, Cornelia-Ioana
Oprea, Ovidiu-Cristian
Andronescu, Ecaterina
author_sort Motelica, Ludmila
collection PubMed
description New packaging materials based on biopolymers are gaining increasing attention due to many advantages like biodegradability or existence of renewable sources. Grouping more antimicrobials agents in the same packaging can create a synergic effect, resulting in either a better antimicrobial activity against a wider spectrum of spoilage agents or a lower required quantity of antimicrobials. In the present work, we obtained a biodegradable antimicrobial film that can be used as packaging material for food. Films based on chitosan as biodegradable polymer, with ZnO and Ag nanoparticles as filler/antimicrobial agents were fabricated by a casting method. The nanoparticles were loaded with citronella essential oil (CEO) in order to enhance the antimicrobial activity of the nanocomposite films. The tests made on Gram-positive, Gram-negative, and fungal strains indicated a broad-spectrum antimicrobial activity, with inhibition diameters of over 30 mm for bacterial strains and over 20 mm for fungal strains. The synergic effect was evidenced by comparing the antimicrobial results with chitosan/ZnO/CEO or chitosan/Ag/CEO simple films. According to the literature and our preliminary studies, these formulations are suitable as coating for fruits. The obtained nanocomposite films presented lower water vapor permeability values when compared with the chitosan control film. The samples were characterized by SEM, fluorescence and UV-Vis spectroscopy, FTIR spectroscopy and microscopy, and thermal analysis.
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spelling pubmed-77619092020-12-26 Innovative Antimicrobial Chitosan/ZnO/Ag NPs/Citronella Essential Oil Nanocomposite—Potential Coating for Grapes Motelica, Ludmila Ficai, Denisa Ficai, Anton Truşcă, Roxana-Doina Ilie, Cornelia-Ioana Oprea, Ovidiu-Cristian Andronescu, Ecaterina Foods Article New packaging materials based on biopolymers are gaining increasing attention due to many advantages like biodegradability or existence of renewable sources. Grouping more antimicrobials agents in the same packaging can create a synergic effect, resulting in either a better antimicrobial activity against a wider spectrum of spoilage agents or a lower required quantity of antimicrobials. In the present work, we obtained a biodegradable antimicrobial film that can be used as packaging material for food. Films based on chitosan as biodegradable polymer, with ZnO and Ag nanoparticles as filler/antimicrobial agents were fabricated by a casting method. The nanoparticles were loaded with citronella essential oil (CEO) in order to enhance the antimicrobial activity of the nanocomposite films. The tests made on Gram-positive, Gram-negative, and fungal strains indicated a broad-spectrum antimicrobial activity, with inhibition diameters of over 30 mm for bacterial strains and over 20 mm for fungal strains. The synergic effect was evidenced by comparing the antimicrobial results with chitosan/ZnO/CEO or chitosan/Ag/CEO simple films. According to the literature and our preliminary studies, these formulations are suitable as coating for fruits. The obtained nanocomposite films presented lower water vapor permeability values when compared with the chitosan control film. The samples were characterized by SEM, fluorescence and UV-Vis spectroscopy, FTIR spectroscopy and microscopy, and thermal analysis. MDPI 2020-12-04 /pmc/articles/PMC7761909/ /pubmed/33291604 http://dx.doi.org/10.3390/foods9121801 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
Motelica, Ludmila
Ficai, Denisa
Ficai, Anton
Truşcă, Roxana-Doina
Ilie, Cornelia-Ioana
Oprea, Ovidiu-Cristian
Andronescu, Ecaterina
Innovative Antimicrobial Chitosan/ZnO/Ag NPs/Citronella Essential Oil Nanocomposite—Potential Coating for Grapes
title Innovative Antimicrobial Chitosan/ZnO/Ag NPs/Citronella Essential Oil Nanocomposite—Potential Coating for Grapes
title_full Innovative Antimicrobial Chitosan/ZnO/Ag NPs/Citronella Essential Oil Nanocomposite—Potential Coating for Grapes
title_fullStr Innovative Antimicrobial Chitosan/ZnO/Ag NPs/Citronella Essential Oil Nanocomposite—Potential Coating for Grapes
title_full_unstemmed Innovative Antimicrobial Chitosan/ZnO/Ag NPs/Citronella Essential Oil Nanocomposite—Potential Coating for Grapes
title_short Innovative Antimicrobial Chitosan/ZnO/Ag NPs/Citronella Essential Oil Nanocomposite—Potential Coating for Grapes
title_sort innovative antimicrobial chitosan/zno/ag nps/citronella essential oil nanocomposite—potential coating for grapes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7761909/
https://www.ncbi.nlm.nih.gov/pubmed/33291604
http://dx.doi.org/10.3390/foods9121801
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