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Effect of Heat Treatment on Osteoblast Performance and Bactericidal Behavior of Ti6Al4V(ELI)-3at.%Cu Fabricated by Laser Powder Bed Fusion

Cu addition to alloys for biomedical applications has been of great interest to reduce bacterial growth. In situ-alloyed Ti6Al4V(ELI)-3at.%Cu was successfully manufactured by laser powder bed fusion (L-PBF). Even so, post-heat treatments are required to avoid distortions and/or achieve required/desi...

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Autores principales: Martín Vilardell, Anna, Cantillo Alzamora, Vanesa, Bauso, Luana Vittoria, Madrid, Cristina, Krakhmalev, Pavel, Albu, Mihaela, Yadroitsava, Ina, Yadroitsev, Igor, Garcia-Giralt, Natalia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962850/
https://www.ncbi.nlm.nih.gov/pubmed/36826862
http://dx.doi.org/10.3390/jfb14020063
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author Martín Vilardell, Anna
Cantillo Alzamora, Vanesa
Bauso, Luana Vittoria
Madrid, Cristina
Krakhmalev, Pavel
Albu, Mihaela
Yadroitsava, Ina
Yadroitsev, Igor
Garcia-Giralt, Natalia
author_facet Martín Vilardell, Anna
Cantillo Alzamora, Vanesa
Bauso, Luana Vittoria
Madrid, Cristina
Krakhmalev, Pavel
Albu, Mihaela
Yadroitsava, Ina
Yadroitsev, Igor
Garcia-Giralt, Natalia
author_sort Martín Vilardell, Anna
collection PubMed
description Cu addition to alloys for biomedical applications has been of great interest to reduce bacterial growth. In situ-alloyed Ti6Al4V(ELI)-3at.%Cu was successfully manufactured by laser powder bed fusion (L-PBF). Even so, post-heat treatments are required to avoid distortions and/or achieve required/desired mechanical and fatigue properties. The present study is focused on the investigation of microstructural changes in L-PBF Ti6Al4V(ELI)-3at.%Cu after stress relieving and annealing treatments, as well as their influence on osteoblast and bactericidal behavior. After the stress relieving treatment, a homogenously distributed β phase and CuTi(2) intermetallic precipitates were observed over the αʹ matrix. The annealing treatment led to the increase in amount and size of both types of precipitates, but also to phase redistribution along α lamellas. Although microstructural changes were not statistically significant, such increase in β and CuTi(2) content resulted in an increase in osteoblast proliferation after 14 days of cell culture. A significant bactericidal behavior of L-PBF Ti6Al4V(ELI)-3at.%Cu by means of ion release was found after the annealing treatment, provably due to the easier release of Cu ions from β phase. Biofilm formation was inhibited in all on Cu-alloyed specimens with stress relieving but also annealing treatment.
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spelling pubmed-99628502023-02-26 Effect of Heat Treatment on Osteoblast Performance and Bactericidal Behavior of Ti6Al4V(ELI)-3at.%Cu Fabricated by Laser Powder Bed Fusion Martín Vilardell, Anna Cantillo Alzamora, Vanesa Bauso, Luana Vittoria Madrid, Cristina Krakhmalev, Pavel Albu, Mihaela Yadroitsava, Ina Yadroitsev, Igor Garcia-Giralt, Natalia J Funct Biomater Article Cu addition to alloys for biomedical applications has been of great interest to reduce bacterial growth. In situ-alloyed Ti6Al4V(ELI)-3at.%Cu was successfully manufactured by laser powder bed fusion (L-PBF). Even so, post-heat treatments are required to avoid distortions and/or achieve required/desired mechanical and fatigue properties. The present study is focused on the investigation of microstructural changes in L-PBF Ti6Al4V(ELI)-3at.%Cu after stress relieving and annealing treatments, as well as their influence on osteoblast and bactericidal behavior. After the stress relieving treatment, a homogenously distributed β phase and CuTi(2) intermetallic precipitates were observed over the αʹ matrix. The annealing treatment led to the increase in amount and size of both types of precipitates, but also to phase redistribution along α lamellas. Although microstructural changes were not statistically significant, such increase in β and CuTi(2) content resulted in an increase in osteoblast proliferation after 14 days of cell culture. A significant bactericidal behavior of L-PBF Ti6Al4V(ELI)-3at.%Cu by means of ion release was found after the annealing treatment, provably due to the easier release of Cu ions from β phase. Biofilm formation was inhibited in all on Cu-alloyed specimens with stress relieving but also annealing treatment. MDPI 2023-01-23 /pmc/articles/PMC9962850/ /pubmed/36826862 http://dx.doi.org/10.3390/jfb14020063 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
Martín Vilardell, Anna
Cantillo Alzamora, Vanesa
Bauso, Luana Vittoria
Madrid, Cristina
Krakhmalev, Pavel
Albu, Mihaela
Yadroitsava, Ina
Yadroitsev, Igor
Garcia-Giralt, Natalia
Effect of Heat Treatment on Osteoblast Performance and Bactericidal Behavior of Ti6Al4V(ELI)-3at.%Cu Fabricated by Laser Powder Bed Fusion
title Effect of Heat Treatment on Osteoblast Performance and Bactericidal Behavior of Ti6Al4V(ELI)-3at.%Cu Fabricated by Laser Powder Bed Fusion
title_full Effect of Heat Treatment on Osteoblast Performance and Bactericidal Behavior of Ti6Al4V(ELI)-3at.%Cu Fabricated by Laser Powder Bed Fusion
title_fullStr Effect of Heat Treatment on Osteoblast Performance and Bactericidal Behavior of Ti6Al4V(ELI)-3at.%Cu Fabricated by Laser Powder Bed Fusion
title_full_unstemmed Effect of Heat Treatment on Osteoblast Performance and Bactericidal Behavior of Ti6Al4V(ELI)-3at.%Cu Fabricated by Laser Powder Bed Fusion
title_short Effect of Heat Treatment on Osteoblast Performance and Bactericidal Behavior of Ti6Al4V(ELI)-3at.%Cu Fabricated by Laser Powder Bed Fusion
title_sort effect of heat treatment on osteoblast performance and bactericidal behavior of ti6al4v(eli)-3at.%cu fabricated by laser powder bed fusion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962850/
https://www.ncbi.nlm.nih.gov/pubmed/36826862
http://dx.doi.org/10.3390/jfb14020063
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