Cargando…

Evaluation of Long–Lasting Antibacterial Properties and Cytotoxic Behavior of Functionalized Silver-Nanocellulose Composite

Materials possessing long-term antibacterial behavior and high cytotoxicity are of extreme interest in several applications, from biomedical devices to food packaging. Furthermore, for the safeguard of the human health and the environment, it is also stringent keeping in mind the need to gather good...

Descripción completa

Detalles Bibliográficos
Autores principales: Toro, Roberta Grazia, Adel, Abeer Mohamed, de Caro, Tilde, Federici, Fulvio, Cerri, Luciana, Bolli, Eleonora, Mezzi, Alessio, Barbalinardo, Marianna, Gentili, Denis, Cavallini, Massimiliano, Al-Shemy, Mona Tawfik, Montanari, Roberta, Caschera, Daniela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8347877/
https://www.ncbi.nlm.nih.gov/pubmed/34361390
http://dx.doi.org/10.3390/ma14154198
_version_ 1783735200977518592
author Toro, Roberta Grazia
Adel, Abeer Mohamed
de Caro, Tilde
Federici, Fulvio
Cerri, Luciana
Bolli, Eleonora
Mezzi, Alessio
Barbalinardo, Marianna
Gentili, Denis
Cavallini, Massimiliano
Al-Shemy, Mona Tawfik
Montanari, Roberta
Caschera, Daniela
author_facet Toro, Roberta Grazia
Adel, Abeer Mohamed
de Caro, Tilde
Federici, Fulvio
Cerri, Luciana
Bolli, Eleonora
Mezzi, Alessio
Barbalinardo, Marianna
Gentili, Denis
Cavallini, Massimiliano
Al-Shemy, Mona Tawfik
Montanari, Roberta
Caschera, Daniela
author_sort Toro, Roberta Grazia
collection PubMed
description Materials possessing long-term antibacterial behavior and high cytotoxicity are of extreme interest in several applications, from biomedical devices to food packaging. Furthermore, for the safeguard of the human health and the environment, it is also stringent keeping in mind the need to gather good functional performances with the development of ecofriendly materials and processes. In this study, we propose a green fabrication method for the synthesis of silver nanoparticles supported on oxidized nanocellulose (ONCs), acting as both template and reducing agent. The complete structural and morphological characterization shows that well-dispersed and crystalline Ag nanoparticles of about 10–20 nm were obtained in the cellulose matrix. The antibacterial properties of Ag-nanocomposites (Ag–ONCs) were evaluated through specific Agar diffusion tests against E. coli bacteria, and the results clearly demonstrate that Ag–ONCs possess high long-lasting antibacterial behavior, retained up to 85% growth bacteria inhibition, even after 30 days of incubation. Finally, cell viability assays reveal that Ag-ONCs show a significant cytotoxicity in mouse embryonic fibroblasts.
format Online
Article
Text
id pubmed-8347877
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-83478772021-08-08 Evaluation of Long–Lasting Antibacterial Properties and Cytotoxic Behavior of Functionalized Silver-Nanocellulose Composite Toro, Roberta Grazia Adel, Abeer Mohamed de Caro, Tilde Federici, Fulvio Cerri, Luciana Bolli, Eleonora Mezzi, Alessio Barbalinardo, Marianna Gentili, Denis Cavallini, Massimiliano Al-Shemy, Mona Tawfik Montanari, Roberta Caschera, Daniela Materials (Basel) Article Materials possessing long-term antibacterial behavior and high cytotoxicity are of extreme interest in several applications, from biomedical devices to food packaging. Furthermore, for the safeguard of the human health and the environment, it is also stringent keeping in mind the need to gather good functional performances with the development of ecofriendly materials and processes. In this study, we propose a green fabrication method for the synthesis of silver nanoparticles supported on oxidized nanocellulose (ONCs), acting as both template and reducing agent. The complete structural and morphological characterization shows that well-dispersed and crystalline Ag nanoparticles of about 10–20 nm were obtained in the cellulose matrix. The antibacterial properties of Ag-nanocomposites (Ag–ONCs) were evaluated through specific Agar diffusion tests against E. coli bacteria, and the results clearly demonstrate that Ag–ONCs possess high long-lasting antibacterial behavior, retained up to 85% growth bacteria inhibition, even after 30 days of incubation. Finally, cell viability assays reveal that Ag-ONCs show a significant cytotoxicity in mouse embryonic fibroblasts. MDPI 2021-07-27 /pmc/articles/PMC8347877/ /pubmed/34361390 http://dx.doi.org/10.3390/ma14154198 Text en © 2021 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
Toro, Roberta Grazia
Adel, Abeer Mohamed
de Caro, Tilde
Federici, Fulvio
Cerri, Luciana
Bolli, Eleonora
Mezzi, Alessio
Barbalinardo, Marianna
Gentili, Denis
Cavallini, Massimiliano
Al-Shemy, Mona Tawfik
Montanari, Roberta
Caschera, Daniela
Evaluation of Long–Lasting Antibacterial Properties and Cytotoxic Behavior of Functionalized Silver-Nanocellulose Composite
title Evaluation of Long–Lasting Antibacterial Properties and Cytotoxic Behavior of Functionalized Silver-Nanocellulose Composite
title_full Evaluation of Long–Lasting Antibacterial Properties and Cytotoxic Behavior of Functionalized Silver-Nanocellulose Composite
title_fullStr Evaluation of Long–Lasting Antibacterial Properties and Cytotoxic Behavior of Functionalized Silver-Nanocellulose Composite
title_full_unstemmed Evaluation of Long–Lasting Antibacterial Properties and Cytotoxic Behavior of Functionalized Silver-Nanocellulose Composite
title_short Evaluation of Long–Lasting Antibacterial Properties and Cytotoxic Behavior of Functionalized Silver-Nanocellulose Composite
title_sort evaluation of long–lasting antibacterial properties and cytotoxic behavior of functionalized silver-nanocellulose composite
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8347877/
https://www.ncbi.nlm.nih.gov/pubmed/34361390
http://dx.doi.org/10.3390/ma14154198
work_keys_str_mv AT tororobertagrazia evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT adelabeermohamed evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT decarotilde evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT federicifulvio evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT cerriluciana evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT bollieleonora evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT mezzialessio evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT barbalinardomarianna evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT gentilidenis evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT cavallinimassimiliano evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT alshemymonatawfik evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT montanariroberta evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite
AT cascheradaniela evaluationoflonglastingantibacterialpropertiesandcytotoxicbehavioroffunctionalizedsilvernanocellulosecomposite