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In situ growth of silver nanoparticles on chitosan matrix for the synthesis of hybrid electrospun fibers: Analysis of microstructural and mechanical properties

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posted on 2022-02-17, 10:21 authored by Karina Santiago-Castillo, Aidé Minerva Torres-Huerta, Deyanira del Ángel-López, Miguel Antonio Domínguez-Crespo, Héctor Dorantes-Rosales, Diana Palma-Ramírez, Helen WillcockHelen Willcock
A viable alternative for the next generation of wound dressings is the preparation of electrospun fibers from biodegradable polymers in combination with inorganic nanoparticles. A poly(vinyl alcohol)-chitosan-silver nanoparticles (PVA-CTS-Ag NPs) system has been developed for antimicrobial and wound healing applications. Here, the preparation of PVA-CTS-Ag electrospun fibers using a two-step process is reported in order to analyze changes in the microstructural, me?chanical, and antibacterial properties and confirm their potential application in the biomedical field. The Ag nanoparticles were well-dispersed into the chitosan matrix and their cubic structure after the electrospinning process was also retained. The Ag NPs displayed an average diameter of ~33 nm into the CTS matrix, while the size increased up to 213 nm in the PVA-CTS-Ag(NPs) fibers. It was observed that strong chemical interactions exist between organic (CTS) and inorganic phases through nitrogenous groups and the oxygen of the glycosidic bonds. A defect-free morphology was obtained in the PVA-CTS-Ag NPs final fibers with an important enhancement of the mechanical properties as well as of the antibacterial activity compared with pure PVA-CTS electrospun fibers. The results of antibacterial activity against E. coli and S. aureus confirmed that PVA-CTS-Ag(NPs) fibers can be potentially used as a material for biomedical application

Funding

Instituto Politécnico Nacional through the SIP 20220668, 20220671, 20220672, 20221155, 20221153, 20221111

COFAA

CONACYT through CB-2015-252181

Loughborough University through Loughborough Materials Characterization Centre (LMCC)

History

School

  • Aeronautical, Automotive, Chemical and Materials Engineering

Department

  • Materials

Published in

Polymers

Volume

14

Issue

4

Publisher

MDPI AG

Version

  • VoR (Version of Record)

Rights holder

© the Authors

Publisher statement

This is an Open Access Article. It is published by MDPI under the Creative Commons Attribution 4.0 Unported Licence (CC BY). Full details of this licence are available at: http://creativecommons.org/licenses/by/4.0/

Acceptance date

2022-02-05

Publication date

2022-02-10

Copyright date

2022

ISSN

2073-4360

Language

  • en

Depositor

Dr Helen Willcock. Deposit date: 16 February 2022

Article number

674

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