Sustainable Coated Nanostructures Based on Alginate and Electrospun Collagen Loaded with Antimicrobial Agents

In this study, sodium alginate film (Alg) was coated with electrospun collagen glue (Col) extracted from rabbit skin waste, loaded with different commercial antimicrobial agents (chitosan, AG425K and ZnONPs) and investigated in terms of morphological, structural and biological properties. The coated...

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Main Authors: Ecaterina Matei, Carmen Gaidau, Maria Râpă, Laura Mihaela Stefan, Lia-Mara Ditu, Andra Mihaela Predescu, Maria Stanca, Mircea Cristian Pantilimon, Mariana Daniela Berechet, Cristian Predescu, Anamaria Mosutiu
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Coatings
Subjects:
Online Access:https://www.mdpi.com/2079-6412/11/2/121
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spelling doaj-60a58325b9654707b3da85994d9f99312021-01-22T00:02:56ZengMDPI AGCoatings2079-64122021-01-011112112110.3390/coatings11020121Sustainable Coated Nanostructures Based on Alginate and Electrospun Collagen Loaded with Antimicrobial AgentsEcaterina Matei0Carmen Gaidau1Maria Râpă2Laura Mihaela Stefan3Lia-Mara Ditu4Andra Mihaela Predescu5Maria Stanca6Mircea Cristian Pantilimon7Mariana Daniela Berechet8Cristian Predescu9Anamaria Mosutiu10Faculty of Materials Science and Engineeing, University POLITEHNICA of Bucharest, 313 Splaiul Independentei, 060042 Bucharest, RomaniaThe National Research & Development Institute for Textiles and Leather—Division Leather and Footwear Research Institute Bucharest, 93 Ion Minulescu Street, 031215 Bucharest, RomaniaFaculty of Materials Science and Engineeing, University POLITEHNICA of Bucharest, 313 Splaiul Independentei, 060042 Bucharest, RomaniaNational Institute of Research and Development for Biological Sciences, 296 Splaiul Independenţei, 060031 Bucharest, RomaniaFaculty of Biology, University of Bucharest, 60101 Bucharest, RomaniaFaculty of Materials Science and Engineeing, University POLITEHNICA of Bucharest, 313 Splaiul Independentei, 060042 Bucharest, RomaniaThe National Research & Development Institute for Textiles and Leather—Division Leather and Footwear Research Institute Bucharest, 93 Ion Minulescu Street, 031215 Bucharest, RomaniaFaculty of Materials Science and Engineeing, University POLITEHNICA of Bucharest, 313 Splaiul Independentei, 060042 Bucharest, RomaniaThe National Research & Development Institute for Textiles and Leather—Division Leather and Footwear Research Institute Bucharest, 93 Ion Minulescu Street, 031215 Bucharest, RomaniaFaculty of Materials Science and Engineeing, University POLITEHNICA of Bucharest, 313 Splaiul Independentei, 060042 Bucharest, RomaniaSPD STAR SRL, Loc. Caseiu No. 136/C, 407155 Cluj, RomaniaIn this study, sodium alginate film (Alg) was coated with electrospun collagen glue (Col) extracted from rabbit skin waste, loaded with different commercial antimicrobial agents (chitosan, AG425K and ZnONPs) and investigated in terms of morphological, structural and biological properties. The coated nanostructures were characterized using scanning electron microscopy coupled with the energy-dispersive X-ray (SEM/EDS), Attenuated Total Reflectance Fourier-Transform Infrared spectroscopy (ATR FT-IR), and Atomic Force Microscopy (AFM) tests. The cytotoxicity was investigated on murine L929 fibroblasts using 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide salt (MTT) and lactate dehydrogenase (LDH) assays. Microbiological tests were performed against <i>Staphylococcus aureus</i> ATCC 25923, <i>Escherichia coli</i> ATCC 25922, <i>Pseudomonas aeruginosa</i> ATCC 27853 and <i>Candida albicans</i> ATCC 27853 standard strains. In vitro cell culture tests showed a good cytocompatibility of the coated nanostructured systems, except the sample loaded with ZnONPs, which exhibited a highly cytotoxic effect. Alg-Col-ZnONPs nanostructure inhibited the growth and multiplication of the <i>Staphylococcus aureus</i> ATCC 25923 and <i>Escherichia coli</i> ATCC 25922 bacterial strains. The results of new coated nanostructures may be useful for the development of sustainable biomaterials in a circular economy, with bioactive properties for medical wound dressings.https://www.mdpi.com/2079-6412/11/2/121coatingcollagenantimicrobial agentselectrospinningin vitro cytotoxicityantimicrobial activity
collection DOAJ
language English
format Article
sources DOAJ
author Ecaterina Matei
Carmen Gaidau
Maria Râpă
Laura Mihaela Stefan
Lia-Mara Ditu
Andra Mihaela Predescu
Maria Stanca
Mircea Cristian Pantilimon
Mariana Daniela Berechet
Cristian Predescu
Anamaria Mosutiu
spellingShingle Ecaterina Matei
Carmen Gaidau
Maria Râpă
Laura Mihaela Stefan
Lia-Mara Ditu
Andra Mihaela Predescu
Maria Stanca
Mircea Cristian Pantilimon
Mariana Daniela Berechet
Cristian Predescu
Anamaria Mosutiu
Sustainable Coated Nanostructures Based on Alginate and Electrospun Collagen Loaded with Antimicrobial Agents
Coatings
coating
collagen
antimicrobial agents
electrospinning
in vitro cytotoxicity
antimicrobial activity
author_facet Ecaterina Matei
Carmen Gaidau
Maria Râpă
Laura Mihaela Stefan
Lia-Mara Ditu
Andra Mihaela Predescu
Maria Stanca
Mircea Cristian Pantilimon
Mariana Daniela Berechet
Cristian Predescu
Anamaria Mosutiu
author_sort Ecaterina Matei
title Sustainable Coated Nanostructures Based on Alginate and Electrospun Collagen Loaded with Antimicrobial Agents
title_short Sustainable Coated Nanostructures Based on Alginate and Electrospun Collagen Loaded with Antimicrobial Agents
title_full Sustainable Coated Nanostructures Based on Alginate and Electrospun Collagen Loaded with Antimicrobial Agents
title_fullStr Sustainable Coated Nanostructures Based on Alginate and Electrospun Collagen Loaded with Antimicrobial Agents
title_full_unstemmed Sustainable Coated Nanostructures Based on Alginate and Electrospun Collagen Loaded with Antimicrobial Agents
title_sort sustainable coated nanostructures based on alginate and electrospun collagen loaded with antimicrobial agents
publisher MDPI AG
series Coatings
issn 2079-6412
publishDate 2021-01-01
description In this study, sodium alginate film (Alg) was coated with electrospun collagen glue (Col) extracted from rabbit skin waste, loaded with different commercial antimicrobial agents (chitosan, AG425K and ZnONPs) and investigated in terms of morphological, structural and biological properties. The coated nanostructures were characterized using scanning electron microscopy coupled with the energy-dispersive X-ray (SEM/EDS), Attenuated Total Reflectance Fourier-Transform Infrared spectroscopy (ATR FT-IR), and Atomic Force Microscopy (AFM) tests. The cytotoxicity was investigated on murine L929 fibroblasts using 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide salt (MTT) and lactate dehydrogenase (LDH) assays. Microbiological tests were performed against <i>Staphylococcus aureus</i> ATCC 25923, <i>Escherichia coli</i> ATCC 25922, <i>Pseudomonas aeruginosa</i> ATCC 27853 and <i>Candida albicans</i> ATCC 27853 standard strains. In vitro cell culture tests showed a good cytocompatibility of the coated nanostructured systems, except the sample loaded with ZnONPs, which exhibited a highly cytotoxic effect. Alg-Col-ZnONPs nanostructure inhibited the growth and multiplication of the <i>Staphylococcus aureus</i> ATCC 25923 and <i>Escherichia coli</i> ATCC 25922 bacterial strains. The results of new coated nanostructures may be useful for the development of sustainable biomaterials in a circular economy, with bioactive properties for medical wound dressings.
topic coating
collagen
antimicrobial agents
electrospinning
in vitro cytotoxicity
antimicrobial activity
url https://www.mdpi.com/2079-6412/11/2/121
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