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Surface Characterization, Corrosion Resistance and in Vitro Biocompatibility of a New Ti-Hf-Mo-Sn Alloy

A new superelastic Ti-23Hf-3Mo-4Sn biomedical alloy displaying a particularly large recovery strain was synthesized and characterized in this study. Its native passive film is very thick (18 nm) and contains very protective TiO(2,) Ti(2)O(3), HfO(2), MoO(2), and SnO(2) oxides (XPS analysis). This al...

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Autores principales: Ion, Raluca, Drob, Silviu Iulian, Ijaz, Muhammad Farzik, Vasilescu, Cora, Osiceanu, Petre, Gordin, Doina-Margareta, Cimpean, Anisoara, Gloriant, Thierry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5456635/
https://www.ncbi.nlm.nih.gov/pubmed/28773939
http://dx.doi.org/10.3390/ma9100818
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author Ion, Raluca
Drob, Silviu Iulian
Ijaz, Muhammad Farzik
Vasilescu, Cora
Osiceanu, Petre
Gordin, Doina-Margareta
Cimpean, Anisoara
Gloriant, Thierry
author_facet Ion, Raluca
Drob, Silviu Iulian
Ijaz, Muhammad Farzik
Vasilescu, Cora
Osiceanu, Petre
Gordin, Doina-Margareta
Cimpean, Anisoara
Gloriant, Thierry
author_sort Ion, Raluca
collection PubMed
description A new superelastic Ti-23Hf-3Mo-4Sn biomedical alloy displaying a particularly large recovery strain was synthesized and characterized in this study. Its native passive film is very thick (18 nm) and contains very protective TiO(2,) Ti(2)O(3), HfO(2), MoO(2), and SnO(2) oxides (XPS analysis). This alloy revealed nobler electrochemical behavior, more favorable values of the corrosion parameters and open circuit potentials in simulated body fluid in comparison with commercially pure titanium (CP-Ti) and Ti-6Al-4V alloy taken as reference biomaterials in this study. This is due to the favorable influence of the alloying elements Hf, Sn, Mo, which enhance the protective properties of the native passive film on alloy surface. Impedance spectra showed a passive film with two layers, an inner, capacitive, barrier, dense layer and an outer, less insulating, porous layer that confer both high corrosion resistance and bioactivity to the alloy. In vitro tests were carried out in order to evaluate the response of Human Umbilical Vein Endothelial Cells (HUVECs) to Ti-23Hf-3Mo-4Sn alloy in terms of cell viability, cell proliferation, phenotypic marker expression and nitric oxide release. The results indicate a similar level of cytocompatibility with HUVEC cells cultured on Ti-23Hf-3Mo-4Sn substrate and those cultured on the conventional CP-Ti and Ti-6Al-4V metallic materials.
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spelling pubmed-54566352017-07-28 Surface Characterization, Corrosion Resistance and in Vitro Biocompatibility of a New Ti-Hf-Mo-Sn Alloy Ion, Raluca Drob, Silviu Iulian Ijaz, Muhammad Farzik Vasilescu, Cora Osiceanu, Petre Gordin, Doina-Margareta Cimpean, Anisoara Gloriant, Thierry Materials (Basel) Article A new superelastic Ti-23Hf-3Mo-4Sn biomedical alloy displaying a particularly large recovery strain was synthesized and characterized in this study. Its native passive film is very thick (18 nm) and contains very protective TiO(2,) Ti(2)O(3), HfO(2), MoO(2), and SnO(2) oxides (XPS analysis). This alloy revealed nobler electrochemical behavior, more favorable values of the corrosion parameters and open circuit potentials in simulated body fluid in comparison with commercially pure titanium (CP-Ti) and Ti-6Al-4V alloy taken as reference biomaterials in this study. This is due to the favorable influence of the alloying elements Hf, Sn, Mo, which enhance the protective properties of the native passive film on alloy surface. Impedance spectra showed a passive film with two layers, an inner, capacitive, barrier, dense layer and an outer, less insulating, porous layer that confer both high corrosion resistance and bioactivity to the alloy. In vitro tests were carried out in order to evaluate the response of Human Umbilical Vein Endothelial Cells (HUVECs) to Ti-23Hf-3Mo-4Sn alloy in terms of cell viability, cell proliferation, phenotypic marker expression and nitric oxide release. The results indicate a similar level of cytocompatibility with HUVEC cells cultured on Ti-23Hf-3Mo-4Sn substrate and those cultured on the conventional CP-Ti and Ti-6Al-4V metallic materials. MDPI 2016-10-04 /pmc/articles/PMC5456635/ /pubmed/28773939 http://dx.doi.org/10.3390/ma9100818 Text en © 2016 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 (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ion, Raluca
Drob, Silviu Iulian
Ijaz, Muhammad Farzik
Vasilescu, Cora
Osiceanu, Petre
Gordin, Doina-Margareta
Cimpean, Anisoara
Gloriant, Thierry
Surface Characterization, Corrosion Resistance and in Vitro Biocompatibility of a New Ti-Hf-Mo-Sn Alloy
title Surface Characterization, Corrosion Resistance and in Vitro Biocompatibility of a New Ti-Hf-Mo-Sn Alloy
title_full Surface Characterization, Corrosion Resistance and in Vitro Biocompatibility of a New Ti-Hf-Mo-Sn Alloy
title_fullStr Surface Characterization, Corrosion Resistance and in Vitro Biocompatibility of a New Ti-Hf-Mo-Sn Alloy
title_full_unstemmed Surface Characterization, Corrosion Resistance and in Vitro Biocompatibility of a New Ti-Hf-Mo-Sn Alloy
title_short Surface Characterization, Corrosion Resistance and in Vitro Biocompatibility of a New Ti-Hf-Mo-Sn Alloy
title_sort surface characterization, corrosion resistance and in vitro biocompatibility of a new ti-hf-mo-sn alloy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5456635/
https://www.ncbi.nlm.nih.gov/pubmed/28773939
http://dx.doi.org/10.3390/ma9100818
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