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Biological Behaviour and Enhanced Anticorrosive Performance of the Nitrided Superelastic Ti-23Nb-0.7Ta-2Zr-0.5N Alloy

The influence of gas nitriding surface treatment on the superelastic Ti-23Nb-0.7Ta-2Zr-0.5N alloy was evaluated. A thorough characterization of bare and nitrided Ti-based alloy and pure Ti was performed in terms of surface film composition and morphology, electrochemical behaviour, and short term os...

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Autores principales: Mitran, Valentina, Vasilescu, Cora, Drob, Silviu Iulian, Osiceanu, Petre, Calderon-Moreno, Jose Maria, Tabirca, Mariana-Cristina, Gordin, Doina-Margareta, Gloriant, Thierry, Cimpean, Anisoara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4637020/
https://www.ncbi.nlm.nih.gov/pubmed/26583096
http://dx.doi.org/10.1155/2015/261802
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author Mitran, Valentina
Vasilescu, Cora
Drob, Silviu Iulian
Osiceanu, Petre
Calderon-Moreno, Jose Maria
Tabirca, Mariana-Cristina
Gordin, Doina-Margareta
Gloriant, Thierry
Cimpean, Anisoara
author_facet Mitran, Valentina
Vasilescu, Cora
Drob, Silviu Iulian
Osiceanu, Petre
Calderon-Moreno, Jose Maria
Tabirca, Mariana-Cristina
Gordin, Doina-Margareta
Gloriant, Thierry
Cimpean, Anisoara
author_sort Mitran, Valentina
collection PubMed
description The influence of gas nitriding surface treatment on the superelastic Ti-23Nb-0.7Ta-2Zr-0.5N alloy was evaluated. A thorough characterization of bare and nitrided Ti-based alloy and pure Ti was performed in terms of surface film composition and morphology, electrochemical behaviour, and short term osteoblast response. XPS analysis showed that the nitriding treatment strongly influenced the composition (nitrides and oxynitrides) and surface properties both of the substrate and of the bulk alloy. SEM images revealed that the nitrided surface appears as a similar dotted pattern caused by the formation of N-rich domains coexisting with less nitrided domains, while before treatment only topographical features could be observed. All the electrochemical results confirmed the high chemical stability of the nitride and oxynitride coating and the superiority of the applied treatment. The values of the corrosion parameters ascertained the excellent corrosion resistance of the coated alloy in the real functional conditions from the human body. Cell culture experiments with MG63 osteoblasts demonstrated that the studied biomaterials do not elicit any toxic effects and support cell adhesion and enhanced cell proliferation. Altogether, these data indicate that the nitrided Ti-23Nb-0.7Ta-2Zr-0.5N alloy is the most suitable substrate for application in bone implantology.
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spelling pubmed-46370202015-11-18 Biological Behaviour and Enhanced Anticorrosive Performance of the Nitrided Superelastic Ti-23Nb-0.7Ta-2Zr-0.5N Alloy Mitran, Valentina Vasilescu, Cora Drob, Silviu Iulian Osiceanu, Petre Calderon-Moreno, Jose Maria Tabirca, Mariana-Cristina Gordin, Doina-Margareta Gloriant, Thierry Cimpean, Anisoara Biomed Res Int Research Article The influence of gas nitriding surface treatment on the superelastic Ti-23Nb-0.7Ta-2Zr-0.5N alloy was evaluated. A thorough characterization of bare and nitrided Ti-based alloy and pure Ti was performed in terms of surface film composition and morphology, electrochemical behaviour, and short term osteoblast response. XPS analysis showed that the nitriding treatment strongly influenced the composition (nitrides and oxynitrides) and surface properties both of the substrate and of the bulk alloy. SEM images revealed that the nitrided surface appears as a similar dotted pattern caused by the formation of N-rich domains coexisting with less nitrided domains, while before treatment only topographical features could be observed. All the electrochemical results confirmed the high chemical stability of the nitride and oxynitride coating and the superiority of the applied treatment. The values of the corrosion parameters ascertained the excellent corrosion resistance of the coated alloy in the real functional conditions from the human body. Cell culture experiments with MG63 osteoblasts demonstrated that the studied biomaterials do not elicit any toxic effects and support cell adhesion and enhanced cell proliferation. Altogether, these data indicate that the nitrided Ti-23Nb-0.7Ta-2Zr-0.5N alloy is the most suitable substrate for application in bone implantology. Hindawi Publishing Corporation 2015 2015-10-25 /pmc/articles/PMC4637020/ /pubmed/26583096 http://dx.doi.org/10.1155/2015/261802 Text en Copyright © 2015 Valentina Mitran et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Mitran, Valentina
Vasilescu, Cora
Drob, Silviu Iulian
Osiceanu, Petre
Calderon-Moreno, Jose Maria
Tabirca, Mariana-Cristina
Gordin, Doina-Margareta
Gloriant, Thierry
Cimpean, Anisoara
Biological Behaviour and Enhanced Anticorrosive Performance of the Nitrided Superelastic Ti-23Nb-0.7Ta-2Zr-0.5N Alloy
title Biological Behaviour and Enhanced Anticorrosive Performance of the Nitrided Superelastic Ti-23Nb-0.7Ta-2Zr-0.5N Alloy
title_full Biological Behaviour and Enhanced Anticorrosive Performance of the Nitrided Superelastic Ti-23Nb-0.7Ta-2Zr-0.5N Alloy
title_fullStr Biological Behaviour and Enhanced Anticorrosive Performance of the Nitrided Superelastic Ti-23Nb-0.7Ta-2Zr-0.5N Alloy
title_full_unstemmed Biological Behaviour and Enhanced Anticorrosive Performance of the Nitrided Superelastic Ti-23Nb-0.7Ta-2Zr-0.5N Alloy
title_short Biological Behaviour and Enhanced Anticorrosive Performance of the Nitrided Superelastic Ti-23Nb-0.7Ta-2Zr-0.5N Alloy
title_sort biological behaviour and enhanced anticorrosive performance of the nitrided superelastic ti-23nb-0.7ta-2zr-0.5n alloy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4637020/
https://www.ncbi.nlm.nih.gov/pubmed/26583096
http://dx.doi.org/10.1155/2015/261802
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