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In Vitro Studies Regarding the Effect of Cellulose Acetate-Based Composite Coatings on the Functional Properties of the Biodegradable Mg3Nd Alloys

Magnesium (Mg) alloys are adequate materials for orthopedic and maxilo-facial implants due to their biocompatibility, good mechanical properties closely related to the hard tissues, and processability. Their main drawbacks are the high-speed corrosion process and hydrogen release. In order to improv...

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Autores principales: Streza, Alexandru, Antoniac, Aurora, (Paltanea), Veronica Manescu, Ciocoiu, Robert, Cotrut, Cosmin-Mihai, Miculescu, Marian, Miculescu, Florin, Antoniac, Iulian, Fosca, Marco, Rau, Julietta V., Dura, Horatiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10669298/
https://www.ncbi.nlm.nih.gov/pubmed/37999167
http://dx.doi.org/10.3390/biomimetics8070526
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author Streza, Alexandru
Antoniac, Aurora
(Paltanea), Veronica Manescu
Ciocoiu, Robert
Cotrut, Cosmin-Mihai
Miculescu, Marian
Miculescu, Florin
Antoniac, Iulian
Fosca, Marco
Rau, Julietta V.
Dura, Horatiu
author_facet Streza, Alexandru
Antoniac, Aurora
(Paltanea), Veronica Manescu
Ciocoiu, Robert
Cotrut, Cosmin-Mihai
Miculescu, Marian
Miculescu, Florin
Antoniac, Iulian
Fosca, Marco
Rau, Julietta V.
Dura, Horatiu
author_sort Streza, Alexandru
collection PubMed
description Magnesium (Mg) alloys are adequate materials for orthopedic and maxilo-facial implants due to their biocompatibility, good mechanical properties closely related to the hard tissues, and processability. Their main drawbacks are the high-speed corrosion process and hydrogen release. In order to improve corrosion and mechanical properties, the Mg matrix can be strengthened through alloying elements with high temperature-dependent solubility materials. Rare earth elements (RE) contribute to mechanical properties and degradation improvement. Another possibility to reduce the corrosion rate of Mg-based alloys was demonstrated to be the different types of coatings (bioceramics, polymers, and composites) applied on their surface. The present investigation is related to the coating of two Mg-based alloys from the system Mg3Nd (Mg-Nd-Y-Zr-Zn) with polymeric-based composite coatings made from cellulose acetate (CA) combined with two fillers, respectively hydroxyapatite (HAp) and Mg particles. The main functions of the coatings are to reduce the biodegradation rate and to modify the surface properties in order to increase osteointegration. Firstly, the microstructural features of the experimental Mg3Nd alloys were revealed by optical microscopy and scanning electron microscopy (SEM) coupled with energy-dispersive spectroscopy. Apart from the surface morphology revealed by SEM, the roughness and wettability of all experimental samples were evaluated. The corrosion behavior of the uncoated and coated samples of both Mg3Nd alloys was investigated by immersion testing and electrochemical testing using Simulated Body Fluid as the medium. The complex in vitro research performed highlights that the composite coating based on CA with HAp particles exhibited the best protective effect for both Mg3Nd alloys.
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spelling pubmed-106692982023-11-04 In Vitro Studies Regarding the Effect of Cellulose Acetate-Based Composite Coatings on the Functional Properties of the Biodegradable Mg3Nd Alloys Streza, Alexandru Antoniac, Aurora (Paltanea), Veronica Manescu Ciocoiu, Robert Cotrut, Cosmin-Mihai Miculescu, Marian Miculescu, Florin Antoniac, Iulian Fosca, Marco Rau, Julietta V. Dura, Horatiu Biomimetics (Basel) Article Magnesium (Mg) alloys are adequate materials for orthopedic and maxilo-facial implants due to their biocompatibility, good mechanical properties closely related to the hard tissues, and processability. Their main drawbacks are the high-speed corrosion process and hydrogen release. In order to improve corrosion and mechanical properties, the Mg matrix can be strengthened through alloying elements with high temperature-dependent solubility materials. Rare earth elements (RE) contribute to mechanical properties and degradation improvement. Another possibility to reduce the corrosion rate of Mg-based alloys was demonstrated to be the different types of coatings (bioceramics, polymers, and composites) applied on their surface. The present investigation is related to the coating of two Mg-based alloys from the system Mg3Nd (Mg-Nd-Y-Zr-Zn) with polymeric-based composite coatings made from cellulose acetate (CA) combined with two fillers, respectively hydroxyapatite (HAp) and Mg particles. The main functions of the coatings are to reduce the biodegradation rate and to modify the surface properties in order to increase osteointegration. Firstly, the microstructural features of the experimental Mg3Nd alloys were revealed by optical microscopy and scanning electron microscopy (SEM) coupled with energy-dispersive spectroscopy. Apart from the surface morphology revealed by SEM, the roughness and wettability of all experimental samples were evaluated. The corrosion behavior of the uncoated and coated samples of both Mg3Nd alloys was investigated by immersion testing and electrochemical testing using Simulated Body Fluid as the medium. The complex in vitro research performed highlights that the composite coating based on CA with HAp particles exhibited the best protective effect for both Mg3Nd alloys. MDPI 2023-11-04 /pmc/articles/PMC10669298/ /pubmed/37999167 http://dx.doi.org/10.3390/biomimetics8070526 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
Streza, Alexandru
Antoniac, Aurora
(Paltanea), Veronica Manescu
Ciocoiu, Robert
Cotrut, Cosmin-Mihai
Miculescu, Marian
Miculescu, Florin
Antoniac, Iulian
Fosca, Marco
Rau, Julietta V.
Dura, Horatiu
In Vitro Studies Regarding the Effect of Cellulose Acetate-Based Composite Coatings on the Functional Properties of the Biodegradable Mg3Nd Alloys
title In Vitro Studies Regarding the Effect of Cellulose Acetate-Based Composite Coatings on the Functional Properties of the Biodegradable Mg3Nd Alloys
title_full In Vitro Studies Regarding the Effect of Cellulose Acetate-Based Composite Coatings on the Functional Properties of the Biodegradable Mg3Nd Alloys
title_fullStr In Vitro Studies Regarding the Effect of Cellulose Acetate-Based Composite Coatings on the Functional Properties of the Biodegradable Mg3Nd Alloys
title_full_unstemmed In Vitro Studies Regarding the Effect of Cellulose Acetate-Based Composite Coatings on the Functional Properties of the Biodegradable Mg3Nd Alloys
title_short In Vitro Studies Regarding the Effect of Cellulose Acetate-Based Composite Coatings on the Functional Properties of the Biodegradable Mg3Nd Alloys
title_sort in vitro studies regarding the effect of cellulose acetate-based composite coatings on the functional properties of the biodegradable mg3nd alloys
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10669298/
https://www.ncbi.nlm.nih.gov/pubmed/37999167
http://dx.doi.org/10.3390/biomimetics8070526
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