Cargando…

Influence of electrospinning parameters on biopolymers nanofibers, with emphasis on cellulose & chitosan

BACKGROUND: Electrospinning is an effective method for producing high-quality biopolymer nanofibers, such as cellulose and chitosan. Cellulose nanofibers have excellent mechanical properties and biocompatibility, making them a promising material for tissue engineering. Chitosan nanofibers are biodeg...

Descripción completa

Detalles Bibliográficos
Autores principales: Refate, Abdallah, Mohamed, Yehia, Mohamed, Mariam, Sobhy, Maiada, Samhy, Karim, Khaled, Omar, Eidaroos, Khaled, Batikh, Hazem, El-Kashif, Emad, El-Khatib, Samah, Mehanny, Sherif
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10361112/
https://www.ncbi.nlm.nih.gov/pubmed/37484420
http://dx.doi.org/10.1016/j.heliyon.2023.e17051
_version_ 1785076161313767424
author Refate, Abdallah
Mohamed, Yehia
Mohamed, Mariam
Sobhy, Maiada
Samhy, Karim
Khaled, Omar
Eidaroos, Khaled
Batikh, Hazem
El-Kashif, Emad
El-Khatib, Samah
Mehanny, Sherif
author_facet Refate, Abdallah
Mohamed, Yehia
Mohamed, Mariam
Sobhy, Maiada
Samhy, Karim
Khaled, Omar
Eidaroos, Khaled
Batikh, Hazem
El-Kashif, Emad
El-Khatib, Samah
Mehanny, Sherif
author_sort Refate, Abdallah
collection PubMed
description BACKGROUND: Electrospinning is an effective method for producing high-quality biopolymer nanofibers, such as cellulose and chitosan. Cellulose nanofibers have excellent mechanical properties and biocompatibility, making them a promising material for tissue engineering. Chitosan nanofibers are biodegradable, biocompatible, and antimicrobial, making them ideal for biomedical applications. The electrospinning parameters, including solution concentration, power supply voltage, orifice diameter, temperature, humidity, and flow rate, play a crucial role in determining the nanofiber diameter, morphology, and mechanical properties, as well as their suitability for various applications. OBJECTIVE: This systematic review aims to synthesize and evaluate the current evidence on the influence of electrospinning parameters on the production and properties of cellulose and chitosan nanofibers. METHODS: A comprehensive search of electronic databases was conducted to identify relevant studies. The inclusion criteria were studies that investigated the effect of electrospinning parameters on cellulose and chitosan nanofibers. RESULTS: It was found that for cellulose, the average fiber diameter increased with increasing each of solution concentration, power supply voltage, orifice diameter, temperature, and humidity. Contrary to tip - collector distance and some optimal points in temperature, where average fiber diameter decreased. For chitosan, the change in voltage and tip to collector distance did not alter the average fiber diameter except for some readings of voltage, which behaved differently. On the other hand, the average fiber diameter increased with increasing flow rate. CONCLUSION: The review highlights the importance of considering electrospinning parameters in the production of high-quality biopolymer nanofibers and provides insights into the optimization of these parameters for specific applications. This review also highlights the need for further research to better understand the underlying mechanisms of electrospinning and to optimize the process to produce biopolymer nanofibers with improved properties.
format Online
Article
Text
id pubmed-10361112
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-103611122023-07-22 Influence of electrospinning parameters on biopolymers nanofibers, with emphasis on cellulose & chitosan Refate, Abdallah Mohamed, Yehia Mohamed, Mariam Sobhy, Maiada Samhy, Karim Khaled, Omar Eidaroos, Khaled Batikh, Hazem El-Kashif, Emad El-Khatib, Samah Mehanny, Sherif Heliyon Review Article BACKGROUND: Electrospinning is an effective method for producing high-quality biopolymer nanofibers, such as cellulose and chitosan. Cellulose nanofibers have excellent mechanical properties and biocompatibility, making them a promising material for tissue engineering. Chitosan nanofibers are biodegradable, biocompatible, and antimicrobial, making them ideal for biomedical applications. The electrospinning parameters, including solution concentration, power supply voltage, orifice diameter, temperature, humidity, and flow rate, play a crucial role in determining the nanofiber diameter, morphology, and mechanical properties, as well as their suitability for various applications. OBJECTIVE: This systematic review aims to synthesize and evaluate the current evidence on the influence of electrospinning parameters on the production and properties of cellulose and chitosan nanofibers. METHODS: A comprehensive search of electronic databases was conducted to identify relevant studies. The inclusion criteria were studies that investigated the effect of electrospinning parameters on cellulose and chitosan nanofibers. RESULTS: It was found that for cellulose, the average fiber diameter increased with increasing each of solution concentration, power supply voltage, orifice diameter, temperature, and humidity. Contrary to tip - collector distance and some optimal points in temperature, where average fiber diameter decreased. For chitosan, the change in voltage and tip to collector distance did not alter the average fiber diameter except for some readings of voltage, which behaved differently. On the other hand, the average fiber diameter increased with increasing flow rate. CONCLUSION: The review highlights the importance of considering electrospinning parameters in the production of high-quality biopolymer nanofibers and provides insights into the optimization of these parameters for specific applications. This review also highlights the need for further research to better understand the underlying mechanisms of electrospinning and to optimize the process to produce biopolymer nanofibers with improved properties. Elsevier 2023-06-07 /pmc/articles/PMC10361112/ /pubmed/37484420 http://dx.doi.org/10.1016/j.heliyon.2023.e17051 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review Article
Refate, Abdallah
Mohamed, Yehia
Mohamed, Mariam
Sobhy, Maiada
Samhy, Karim
Khaled, Omar
Eidaroos, Khaled
Batikh, Hazem
El-Kashif, Emad
El-Khatib, Samah
Mehanny, Sherif
Influence of electrospinning parameters on biopolymers nanofibers, with emphasis on cellulose & chitosan
title Influence of electrospinning parameters on biopolymers nanofibers, with emphasis on cellulose & chitosan
title_full Influence of electrospinning parameters on biopolymers nanofibers, with emphasis on cellulose & chitosan
title_fullStr Influence of electrospinning parameters on biopolymers nanofibers, with emphasis on cellulose & chitosan
title_full_unstemmed Influence of electrospinning parameters on biopolymers nanofibers, with emphasis on cellulose & chitosan
title_short Influence of electrospinning parameters on biopolymers nanofibers, with emphasis on cellulose & chitosan
title_sort influence of electrospinning parameters on biopolymers nanofibers, with emphasis on cellulose & chitosan
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10361112/
https://www.ncbi.nlm.nih.gov/pubmed/37484420
http://dx.doi.org/10.1016/j.heliyon.2023.e17051
work_keys_str_mv AT refateabdallah influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT mohamedyehia influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT mohamedmariam influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT sobhymaiada influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT samhykarim influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT khaledomar influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT eidarooskhaled influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT batikhhazem influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT elkashifemad influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT elkhatibsamah influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan
AT mehannysherif influenceofelectrospinningparametersonbiopolymersnanofiberswithemphasisoncellulosechitosan