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On the Mechanical Properties of Microfibre-Based 3D Chitinous Scaffolds from Selected Verongiida Sponges

Skeletal constructs of diverse marine sponges remain to be a sustainable source of biocompatible porous biopolymer-based 3D scaffolds for tissue engineering and technology, especially structures isolated from cultivated demosponges, which belong to the Verongiida order, due to the renewability of th...

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Autores principales: Duminis, Tomas, Heljak, Marcin, Święszkowski, Wojciech, Ereskovsky, Alexander, Dziedzic, Izabela, Nowicki, Marek, Pajewska-Szmyt, Martyna, Voronkina, Alona, Bornstein, Stefan R., Ehrlich, Hermann
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10532465/
https://www.ncbi.nlm.nih.gov/pubmed/37755076
http://dx.doi.org/10.3390/md21090463
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author Duminis, Tomas
Heljak, Marcin
Święszkowski, Wojciech
Ereskovsky, Alexander
Dziedzic, Izabela
Nowicki, Marek
Pajewska-Szmyt, Martyna
Voronkina, Alona
Bornstein, Stefan R.
Ehrlich, Hermann
author_facet Duminis, Tomas
Heljak, Marcin
Święszkowski, Wojciech
Ereskovsky, Alexander
Dziedzic, Izabela
Nowicki, Marek
Pajewska-Szmyt, Martyna
Voronkina, Alona
Bornstein, Stefan R.
Ehrlich, Hermann
author_sort Duminis, Tomas
collection PubMed
description Skeletal constructs of diverse marine sponges remain to be a sustainable source of biocompatible porous biopolymer-based 3D scaffolds for tissue engineering and technology, especially structures isolated from cultivated demosponges, which belong to the Verongiida order, due to the renewability of their chitinous, fibre-containing architecture focused attention. These chitinous scaffolds have already shown excellent and promising results in biomimetics and tissue engineering with respect to their broad diversity of cells. However, the mechanical features of these constructs have been poorly studied before. For the first time, the elastic moduli characterising the chitinous samples have been determined. Moreover, nanoindentation of the selected bromotyrosine-containing as well as pigment-free chitinous scaffolds isolated from selected verongiids was used in the study for comparative purposes. It was shown that the removal of bromotyrosines from chitin scaffolds results in a reduced elastic modulus; however, their hardness was relatively unaffected.
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spelling pubmed-105324652023-09-28 On the Mechanical Properties of Microfibre-Based 3D Chitinous Scaffolds from Selected Verongiida Sponges Duminis, Tomas Heljak, Marcin Święszkowski, Wojciech Ereskovsky, Alexander Dziedzic, Izabela Nowicki, Marek Pajewska-Szmyt, Martyna Voronkina, Alona Bornstein, Stefan R. Ehrlich, Hermann Mar Drugs Article Skeletal constructs of diverse marine sponges remain to be a sustainable source of biocompatible porous biopolymer-based 3D scaffolds for tissue engineering and technology, especially structures isolated from cultivated demosponges, which belong to the Verongiida order, due to the renewability of their chitinous, fibre-containing architecture focused attention. These chitinous scaffolds have already shown excellent and promising results in biomimetics and tissue engineering with respect to their broad diversity of cells. However, the mechanical features of these constructs have been poorly studied before. For the first time, the elastic moduli characterising the chitinous samples have been determined. Moreover, nanoindentation of the selected bromotyrosine-containing as well as pigment-free chitinous scaffolds isolated from selected verongiids was used in the study for comparative purposes. It was shown that the removal of bromotyrosines from chitin scaffolds results in a reduced elastic modulus; however, their hardness was relatively unaffected. MDPI 2023-08-24 /pmc/articles/PMC10532465/ /pubmed/37755076 http://dx.doi.org/10.3390/md21090463 Text en © 2023 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
Duminis, Tomas
Heljak, Marcin
Święszkowski, Wojciech
Ereskovsky, Alexander
Dziedzic, Izabela
Nowicki, Marek
Pajewska-Szmyt, Martyna
Voronkina, Alona
Bornstein, Stefan R.
Ehrlich, Hermann
On the Mechanical Properties of Microfibre-Based 3D Chitinous Scaffolds from Selected Verongiida Sponges
title On the Mechanical Properties of Microfibre-Based 3D Chitinous Scaffolds from Selected Verongiida Sponges
title_full On the Mechanical Properties of Microfibre-Based 3D Chitinous Scaffolds from Selected Verongiida Sponges
title_fullStr On the Mechanical Properties of Microfibre-Based 3D Chitinous Scaffolds from Selected Verongiida Sponges
title_full_unstemmed On the Mechanical Properties of Microfibre-Based 3D Chitinous Scaffolds from Selected Verongiida Sponges
title_short On the Mechanical Properties of Microfibre-Based 3D Chitinous Scaffolds from Selected Verongiida Sponges
title_sort on the mechanical properties of microfibre-based 3d chitinous scaffolds from selected verongiida sponges
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10532465/
https://www.ncbi.nlm.nih.gov/pubmed/37755076
http://dx.doi.org/10.3390/md21090463
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