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Rational Design and Fabrication of ZnONPs Functionalized Sericin/PVA Antimicrobial Sponge

The interests of developing antimicrobial biomaterials based on silk sericin from Bombyx mori cocoon, have been shooting up in the last decades. Sericin is a valuable natural protein owing to its hydrophilicity, biodegradability, and biocompatibility. Here, we fabricated a sponge with antibacterial...

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Autores principales: Ai, Lisha, He, Huawei, Wang, Peng, Cai, Rui, Tao, Gang, Yang, Meirong, Liu, Liying, Zuo, Hua, Zhao, Ping, Wang, Yejing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6801402/
https://www.ncbi.nlm.nih.gov/pubmed/31569598
http://dx.doi.org/10.3390/ijms20194796
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author Ai, Lisha
He, Huawei
Wang, Peng
Cai, Rui
Tao, Gang
Yang, Meirong
Liu, Liying
Zuo, Hua
Zhao, Ping
Wang, Yejing
author_facet Ai, Lisha
He, Huawei
Wang, Peng
Cai, Rui
Tao, Gang
Yang, Meirong
Liu, Liying
Zuo, Hua
Zhao, Ping
Wang, Yejing
author_sort Ai, Lisha
collection PubMed
description The interests of developing antimicrobial biomaterials based on silk sericin from Bombyx mori cocoon, have been shooting up in the last decades. Sericin is a valuable natural protein owing to its hydrophilicity, biodegradability, and biocompatibility. Here, we fabricated a sponge with antibacterial capacities for potential wound dressing application. By co-blending of sericin, polyvinyl alcohol (PVA) and zinc oxide nanoparticles (ZnONPs), the ZnONPs-sericin/PVA composite sponge (ZnONPs-SP) was successfully prepared after freeze-drying. Scanning electron microscopy showed the porous structure of ZnONPs-SP. Energy dispersive spectroscopy indicated the existence of Zn in the sponge. X-ray diffractometry revealed the hexagonal wurtzite structure of ZnONPs. Fourier transform infrared spectroscopy showed the biologic coupling of ZnONPs and sericin resulted in a decrease of α-helix and random coil contents, and an increase of β-sheet structure in the sponge. The swelling experiment suggested ZnONPs-SP has high porosity, good hydrophilicity, and water absorption capability. The plate bacterial colony counting coupled with growth curve assays demonstrated that the composite sponge has an efficiently bacteriostatic effect against Staphylococcus aureus and Escherichia coli, respectively. Furthermore, the cell compatibility analysis suggested the composite sponge has excellent cytocompatibility on NIH3T3 cells. In all, ZnONPs-SP composite sponge has significant potentials in biomaterials such as wound dressing and tissue engineering.
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spelling pubmed-68014022019-10-31 Rational Design and Fabrication of ZnONPs Functionalized Sericin/PVA Antimicrobial Sponge Ai, Lisha He, Huawei Wang, Peng Cai, Rui Tao, Gang Yang, Meirong Liu, Liying Zuo, Hua Zhao, Ping Wang, Yejing Int J Mol Sci Article The interests of developing antimicrobial biomaterials based on silk sericin from Bombyx mori cocoon, have been shooting up in the last decades. Sericin is a valuable natural protein owing to its hydrophilicity, biodegradability, and biocompatibility. Here, we fabricated a sponge with antibacterial capacities for potential wound dressing application. By co-blending of sericin, polyvinyl alcohol (PVA) and zinc oxide nanoparticles (ZnONPs), the ZnONPs-sericin/PVA composite sponge (ZnONPs-SP) was successfully prepared after freeze-drying. Scanning electron microscopy showed the porous structure of ZnONPs-SP. Energy dispersive spectroscopy indicated the existence of Zn in the sponge. X-ray diffractometry revealed the hexagonal wurtzite structure of ZnONPs. Fourier transform infrared spectroscopy showed the biologic coupling of ZnONPs and sericin resulted in a decrease of α-helix and random coil contents, and an increase of β-sheet structure in the sponge. The swelling experiment suggested ZnONPs-SP has high porosity, good hydrophilicity, and water absorption capability. The plate bacterial colony counting coupled with growth curve assays demonstrated that the composite sponge has an efficiently bacteriostatic effect against Staphylococcus aureus and Escherichia coli, respectively. Furthermore, the cell compatibility analysis suggested the composite sponge has excellent cytocompatibility on NIH3T3 cells. In all, ZnONPs-SP composite sponge has significant potentials in biomaterials such as wound dressing and tissue engineering. MDPI 2019-09-27 /pmc/articles/PMC6801402/ /pubmed/31569598 http://dx.doi.org/10.3390/ijms20194796 Text en © 2019 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
Ai, Lisha
He, Huawei
Wang, Peng
Cai, Rui
Tao, Gang
Yang, Meirong
Liu, Liying
Zuo, Hua
Zhao, Ping
Wang, Yejing
Rational Design and Fabrication of ZnONPs Functionalized Sericin/PVA Antimicrobial Sponge
title Rational Design and Fabrication of ZnONPs Functionalized Sericin/PVA Antimicrobial Sponge
title_full Rational Design and Fabrication of ZnONPs Functionalized Sericin/PVA Antimicrobial Sponge
title_fullStr Rational Design and Fabrication of ZnONPs Functionalized Sericin/PVA Antimicrobial Sponge
title_full_unstemmed Rational Design and Fabrication of ZnONPs Functionalized Sericin/PVA Antimicrobial Sponge
title_short Rational Design and Fabrication of ZnONPs Functionalized Sericin/PVA Antimicrobial Sponge
title_sort rational design and fabrication of znonps functionalized sericin/pva antimicrobial sponge
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6801402/
https://www.ncbi.nlm.nih.gov/pubmed/31569598
http://dx.doi.org/10.3390/ijms20194796
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