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Development of Thermosensitive Hydrogels of Chitosan, Sodium and Magnesium Glycerophosphate for Bone Regeneration Applications

Thermosensitive injectable hydrogels based on chitosan neutralized with sodium beta-glycerophosphate (Na-β-GP) have been studied as biomaterials for drug delivery and tissue regeneration. Magnesium (Mg) has been reported to stimulate adhesion and proliferation of bone forming cells. With the aim of...

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Autores principales: Lisková, Jana, Bačaková, Lucie, Skwarczyńska, Agata L., Musial, Olga, Bliznuk, Vitaliy, De Schamphelaere, Karel, Modrzejewska, Zofia, Douglas, Timothy E.L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4493507/
https://www.ncbi.nlm.nih.gov/pubmed/25859630
http://dx.doi.org/10.3390/jfb6020192
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author Lisková, Jana
Bačaková, Lucie
Skwarczyńska, Agata L.
Musial, Olga
Bliznuk, Vitaliy
De Schamphelaere, Karel
Modrzejewska, Zofia
Douglas, Timothy E.L.
author_facet Lisková, Jana
Bačaková, Lucie
Skwarczyńska, Agata L.
Musial, Olga
Bliznuk, Vitaliy
De Schamphelaere, Karel
Modrzejewska, Zofia
Douglas, Timothy E.L.
author_sort Lisková, Jana
collection PubMed
description Thermosensitive injectable hydrogels based on chitosan neutralized with sodium beta-glycerophosphate (Na-β-GP) have been studied as biomaterials for drug delivery and tissue regeneration. Magnesium (Mg) has been reported to stimulate adhesion and proliferation of bone forming cells. With the aim of improving the suitability of the aforementioned chitosan hydrogels as materials for bone regeneration, Mg was incorporated by partial substitution of Na-β-GP with magnesium glycerophosphate (Mg-GP). Chitosan/Na-β-GP and chitosan/Na-β-GP/Mg-GP hydrogels were also loaded with the enzyme alkaline phosphatase (ALP) which induces hydrogel mineralization. Hydrogels were characterized physicochemically with respect to mineralizability and gelation kinetics, and biologically with respect to cytocompatibility and cell adhesion. Substitution of Na-β-GP with Mg-GP did not negatively influence mineralizability. Cell biological testing showed that both chitosan/Na-β-GP and chitosan/Na-β-GP/Mg-GP hydrogels were cytocompatible towards MG63 osteoblast-like cells. Hence, chitosan/Na-β-GP/Mg-GP hydrogels can be used as an alternative to chitosan/Na-β-GP hydrogels for bone regeneration applications. However the incorporation of Mg in the hydrogels during hydrogel formation did not bring any appreciable physicochemical or biological benefit.
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spelling pubmed-44935072015-07-07 Development of Thermosensitive Hydrogels of Chitosan, Sodium and Magnesium Glycerophosphate for Bone Regeneration Applications Lisková, Jana Bačaková, Lucie Skwarczyńska, Agata L. Musial, Olga Bliznuk, Vitaliy De Schamphelaere, Karel Modrzejewska, Zofia Douglas, Timothy E.L. J Funct Biomater Article Thermosensitive injectable hydrogels based on chitosan neutralized with sodium beta-glycerophosphate (Na-β-GP) have been studied as biomaterials for drug delivery and tissue regeneration. Magnesium (Mg) has been reported to stimulate adhesion and proliferation of bone forming cells. With the aim of improving the suitability of the aforementioned chitosan hydrogels as materials for bone regeneration, Mg was incorporated by partial substitution of Na-β-GP with magnesium glycerophosphate (Mg-GP). Chitosan/Na-β-GP and chitosan/Na-β-GP/Mg-GP hydrogels were also loaded with the enzyme alkaline phosphatase (ALP) which induces hydrogel mineralization. Hydrogels were characterized physicochemically with respect to mineralizability and gelation kinetics, and biologically with respect to cytocompatibility and cell adhesion. Substitution of Na-β-GP with Mg-GP did not negatively influence mineralizability. Cell biological testing showed that both chitosan/Na-β-GP and chitosan/Na-β-GP/Mg-GP hydrogels were cytocompatible towards MG63 osteoblast-like cells. Hence, chitosan/Na-β-GP/Mg-GP hydrogels can be used as an alternative to chitosan/Na-β-GP hydrogels for bone regeneration applications. However the incorporation of Mg in the hydrogels during hydrogel formation did not bring any appreciable physicochemical or biological benefit. MDPI 2015-04-09 /pmc/articles/PMC4493507/ /pubmed/25859630 http://dx.doi.org/10.3390/jfb6020192 Text en © 2015 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 license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lisková, Jana
Bačaková, Lucie
Skwarczyńska, Agata L.
Musial, Olga
Bliznuk, Vitaliy
De Schamphelaere, Karel
Modrzejewska, Zofia
Douglas, Timothy E.L.
Development of Thermosensitive Hydrogels of Chitosan, Sodium and Magnesium Glycerophosphate for Bone Regeneration Applications
title Development of Thermosensitive Hydrogels of Chitosan, Sodium and Magnesium Glycerophosphate for Bone Regeneration Applications
title_full Development of Thermosensitive Hydrogels of Chitosan, Sodium and Magnesium Glycerophosphate for Bone Regeneration Applications
title_fullStr Development of Thermosensitive Hydrogels of Chitosan, Sodium and Magnesium Glycerophosphate for Bone Regeneration Applications
title_full_unstemmed Development of Thermosensitive Hydrogels of Chitosan, Sodium and Magnesium Glycerophosphate for Bone Regeneration Applications
title_short Development of Thermosensitive Hydrogels of Chitosan, Sodium and Magnesium Glycerophosphate for Bone Regeneration Applications
title_sort development of thermosensitive hydrogels of chitosan, sodium and magnesium glycerophosphate for bone regeneration applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4493507/
https://www.ncbi.nlm.nih.gov/pubmed/25859630
http://dx.doi.org/10.3390/jfb6020192
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