Manufacture of nanosized apatite coatings on titanium with different surface treatments using a supersaturated calcification solution

The biomimetic method is used for the deposition of calcium phosphate coatings (Ca - P) on the surface of different biomaterials. However, the application of this method requires long exposure times in order to obtain a suitable layer thickness for its use in medical devices. In this paper, we prese...

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Main Authors: Adrian Paz Ramos, Gabriel O. Ybarra, Leonardo M. Pazos, María B. Parodi, Laura Rodríguez, Mónica López Hernández, Jesús E. González Ruíz
Format: Article
Language:English
Published: Sociedade Brasileira de Química
Series:Química Nova
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422016001001159&lng=en&tlng=en
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spelling doaj-6be2f60561394bddb4a740839c854b2a2020-11-25T01:24:01ZengSociedade Brasileira de QuímicaQuímica Nova1678-706439101159116410.21577/0100-4042.20160161S0100-40422016001001159Manufacture of nanosized apatite coatings on titanium with different surface treatments using a supersaturated calcification solutionAdrian Paz RamosGabriel O. YbarraLeonardo M. PazosMaría B. ParodiLaura RodríguezMónica López HernándezJesús E. González RuízThe biomimetic method is used for the deposition of calcium phosphate coatings (Ca - P) on the surface of different biomaterials. However, the application of this method requires long exposure times in order to obtain a suitable layer thickness for its use in medical devices. In this paper, we present a fast approach to obtain apatite coatings on titanium, using a combination of supersaturated calcification solution (SCS) with chemical modification of the titanium surface. Also, it was evaluated the effect of four different surface treatments on the apatite deposition rate. Commercially pure titanium plates were activated by chemical or thermochemical treatments. Then, the activated samples were immersed in a solution with high content of calcium and phosphate ions at 37 ºC for 24 h, mimicking the physiological conditions. The coatings were studied by Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX). The use of SCS solutions allowed the formation of crystalline hydroxyapatite coatings within a period of 24 h with a thickness between 1 and 5.3 µm. Besides, precipitates of hydroxyapatite nanoparticles with a globular configuration, forming aggregates with submicrometer size, were found in SCS solutions.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422016001001159&lng=en&tlng=enCoatingsthin filmsbiomaterialsceramics
collection DOAJ
language English
format Article
sources DOAJ
author Adrian Paz Ramos
Gabriel O. Ybarra
Leonardo M. Pazos
María B. Parodi
Laura Rodríguez
Mónica López Hernández
Jesús E. González Ruíz
spellingShingle Adrian Paz Ramos
Gabriel O. Ybarra
Leonardo M. Pazos
María B. Parodi
Laura Rodríguez
Mónica López Hernández
Jesús E. González Ruíz
Manufacture of nanosized apatite coatings on titanium with different surface treatments using a supersaturated calcification solution
Química Nova
Coatings
thin films
biomaterials
ceramics
author_facet Adrian Paz Ramos
Gabriel O. Ybarra
Leonardo M. Pazos
María B. Parodi
Laura Rodríguez
Mónica López Hernández
Jesús E. González Ruíz
author_sort Adrian Paz Ramos
title Manufacture of nanosized apatite coatings on titanium with different surface treatments using a supersaturated calcification solution
title_short Manufacture of nanosized apatite coatings on titanium with different surface treatments using a supersaturated calcification solution
title_full Manufacture of nanosized apatite coatings on titanium with different surface treatments using a supersaturated calcification solution
title_fullStr Manufacture of nanosized apatite coatings on titanium with different surface treatments using a supersaturated calcification solution
title_full_unstemmed Manufacture of nanosized apatite coatings on titanium with different surface treatments using a supersaturated calcification solution
title_sort manufacture of nanosized apatite coatings on titanium with different surface treatments using a supersaturated calcification solution
publisher Sociedade Brasileira de Química
series Química Nova
issn 1678-7064
description The biomimetic method is used for the deposition of calcium phosphate coatings (Ca - P) on the surface of different biomaterials. However, the application of this method requires long exposure times in order to obtain a suitable layer thickness for its use in medical devices. In this paper, we present a fast approach to obtain apatite coatings on titanium, using a combination of supersaturated calcification solution (SCS) with chemical modification of the titanium surface. Also, it was evaluated the effect of four different surface treatments on the apatite deposition rate. Commercially pure titanium plates were activated by chemical or thermochemical treatments. Then, the activated samples were immersed in a solution with high content of calcium and phosphate ions at 37 ºC for 24 h, mimicking the physiological conditions. The coatings were studied by Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX). The use of SCS solutions allowed the formation of crystalline hydroxyapatite coatings within a period of 24 h with a thickness between 1 and 5.3 µm. Besides, precipitates of hydroxyapatite nanoparticles with a globular configuration, forming aggregates with submicrometer size, were found in SCS solutions.
topic Coatings
thin films
biomaterials
ceramics
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422016001001159&lng=en&tlng=en
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