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Zn- or Cu-containing CaP-Based Coatings Formed by Micro-Arc Oxidation on Titanium and Ti-40Nb Alloy: Part II—Wettability and Biological Performance

This work describes the wettability and biological performance of Zn- and Cu-containing CaP-based coatings prepared by micro-arc oxidation on pure titanium (Ti) and novel Ti-40Nb alloy. Good hydrophilic properties of all the coatings were demonstrated by the low contact angles with liquids, not exce...

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Autores principales: Komarova, Ekaterina G., Sharkeev, Yurii P., Sedelnikova, Mariya B., Prymak, Oleg, Epple, Matthias, Litvinova, Larisa S., Shupletsova, Valeria V., Malashchenko, Vladimir V., Yurova, Kristina A., Dzyuman, Anna N., Kulagina, Irina V., Mushtovatova, Lyudmila S., Bochkareva, Olga P., Karpova, Mariia R., Khlusov, Igor A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7579516/
https://www.ncbi.nlm.nih.gov/pubmed/33008055
http://dx.doi.org/10.3390/ma13194366
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author Komarova, Ekaterina G.
Sharkeev, Yurii P.
Sedelnikova, Mariya B.
Prymak, Oleg
Epple, Matthias
Litvinova, Larisa S.
Shupletsova, Valeria V.
Malashchenko, Vladimir V.
Yurova, Kristina A.
Dzyuman, Anna N.
Kulagina, Irina V.
Mushtovatova, Lyudmila S.
Bochkareva, Olga P.
Karpova, Mariia R.
Khlusov, Igor A.
author_facet Komarova, Ekaterina G.
Sharkeev, Yurii P.
Sedelnikova, Mariya B.
Prymak, Oleg
Epple, Matthias
Litvinova, Larisa S.
Shupletsova, Valeria V.
Malashchenko, Vladimir V.
Yurova, Kristina A.
Dzyuman, Anna N.
Kulagina, Irina V.
Mushtovatova, Lyudmila S.
Bochkareva, Olga P.
Karpova, Mariia R.
Khlusov, Igor A.
author_sort Komarova, Ekaterina G.
collection PubMed
description This work describes the wettability and biological performance of Zn- and Cu-containing CaP-based coatings prepared by micro-arc oxidation on pure titanium (Ti) and novel Ti-40Nb alloy. Good hydrophilic properties of all the coatings were demonstrated by the low contact angles with liquids, not exceeding 45°. An increase in the applied voltage led to an increase of the coating roughness and porosity, thereby reducing the contact angles to 6° with water and to 17° with glycerol. The free surface energy of 75 ± 3 mJ/m(2) for all the coatings were determined. Polar component was calculated as the main component of surface energy, caused by the presence of strong polar PO(4)(3−) and OH(−) bonds. In vitro studies showed that low Cu and Zn amounts (~0.4 at.%) in the coatings promoted high motility of human adipose-derived multipotent mesenchymal stromal cells (hAMMSC) on the implant/cell interface and subsequent cell ability to differentiate into osteoblasts. In vivo study demonstrated 100% ectopic bone formation only on the surface of the CaP coating on Ti. The Zn- and Cu-containing CaP coatings on both substrates and the CaP coating on the Ti-40Nb alloy slightly decreased the incidence of ectopic osteogenesis down to 67%. The MAO coatings showed antibacterial efficacy against Staphylococcus aureus and can be arranged as follows: Zn-CaP/Ti > Cu-CaP/TiNb, Zn-CaP/TiNb > Cu-CaP/Ti.
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spelling pubmed-75795162020-10-29 Zn- or Cu-containing CaP-Based Coatings Formed by Micro-Arc Oxidation on Titanium and Ti-40Nb Alloy: Part II—Wettability and Biological Performance Komarova, Ekaterina G. Sharkeev, Yurii P. Sedelnikova, Mariya B. Prymak, Oleg Epple, Matthias Litvinova, Larisa S. Shupletsova, Valeria V. Malashchenko, Vladimir V. Yurova, Kristina A. Dzyuman, Anna N. Kulagina, Irina V. Mushtovatova, Lyudmila S. Bochkareva, Olga P. Karpova, Mariia R. Khlusov, Igor A. Materials (Basel) Article This work describes the wettability and biological performance of Zn- and Cu-containing CaP-based coatings prepared by micro-arc oxidation on pure titanium (Ti) and novel Ti-40Nb alloy. Good hydrophilic properties of all the coatings were demonstrated by the low contact angles with liquids, not exceeding 45°. An increase in the applied voltage led to an increase of the coating roughness and porosity, thereby reducing the contact angles to 6° with water and to 17° with glycerol. The free surface energy of 75 ± 3 mJ/m(2) for all the coatings were determined. Polar component was calculated as the main component of surface energy, caused by the presence of strong polar PO(4)(3−) and OH(−) bonds. In vitro studies showed that low Cu and Zn amounts (~0.4 at.%) in the coatings promoted high motility of human adipose-derived multipotent mesenchymal stromal cells (hAMMSC) on the implant/cell interface and subsequent cell ability to differentiate into osteoblasts. In vivo study demonstrated 100% ectopic bone formation only on the surface of the CaP coating on Ti. The Zn- and Cu-containing CaP coatings on both substrates and the CaP coating on the Ti-40Nb alloy slightly decreased the incidence of ectopic osteogenesis down to 67%. The MAO coatings showed antibacterial efficacy against Staphylococcus aureus and can be arranged as follows: Zn-CaP/Ti > Cu-CaP/TiNb, Zn-CaP/TiNb > Cu-CaP/Ti. MDPI 2020-09-30 /pmc/articles/PMC7579516/ /pubmed/33008055 http://dx.doi.org/10.3390/ma13194366 Text en © 2020 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
Komarova, Ekaterina G.
Sharkeev, Yurii P.
Sedelnikova, Mariya B.
Prymak, Oleg
Epple, Matthias
Litvinova, Larisa S.
Shupletsova, Valeria V.
Malashchenko, Vladimir V.
Yurova, Kristina A.
Dzyuman, Anna N.
Kulagina, Irina V.
Mushtovatova, Lyudmila S.
Bochkareva, Olga P.
Karpova, Mariia R.
Khlusov, Igor A.
Zn- or Cu-containing CaP-Based Coatings Formed by Micro-Arc Oxidation on Titanium and Ti-40Nb Alloy: Part II—Wettability and Biological Performance
title Zn- or Cu-containing CaP-Based Coatings Formed by Micro-Arc Oxidation on Titanium and Ti-40Nb Alloy: Part II—Wettability and Biological Performance
title_full Zn- or Cu-containing CaP-Based Coatings Formed by Micro-Arc Oxidation on Titanium and Ti-40Nb Alloy: Part II—Wettability and Biological Performance
title_fullStr Zn- or Cu-containing CaP-Based Coatings Formed by Micro-Arc Oxidation on Titanium and Ti-40Nb Alloy: Part II—Wettability and Biological Performance
title_full_unstemmed Zn- or Cu-containing CaP-Based Coatings Formed by Micro-Arc Oxidation on Titanium and Ti-40Nb Alloy: Part II—Wettability and Biological Performance
title_short Zn- or Cu-containing CaP-Based Coatings Formed by Micro-Arc Oxidation on Titanium and Ti-40Nb Alloy: Part II—Wettability and Biological Performance
title_sort zn- or cu-containing cap-based coatings formed by micro-arc oxidation on titanium and ti-40nb alloy: part ii—wettability and biological performance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7579516/
https://www.ncbi.nlm.nih.gov/pubmed/33008055
http://dx.doi.org/10.3390/ma13194366
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