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Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing

Cobalt-base alloys (Co-Cr-Mo) are widely employed in dentistry and orthopedic implants due to their biocompatibility, high mechanical strength and wear resistance. The osseointegration of implants can be improved by surface modification techniques. However, complex geometries obtained by additive ma...

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Autores principales: Iatecola, Amilton, Longhitano, Guilherme Arthur, Antunes, Luiz Henrique Martinez, Jardini, André Luiz, Miguel, Emilio de Castro, Béreš, Miloslav, Lambert, Carlos Salles, Andrade, Tiago Neves, Buchaim, Rogério Leone, Buchaim, Daniela Vieira, Pomini, Karina Torres, Dias, Jefferson Aparecido, Spressão, Daniele Raineri Mesquita Serva, Felix, Marcílio, Cardoso, Guinea Brasil Camargo, da Cunha, Marcelo Rodrigues
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156199/
https://www.ncbi.nlm.nih.gov/pubmed/34069254
http://dx.doi.org/10.3390/pharmaceutics13050724
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author Iatecola, Amilton
Longhitano, Guilherme Arthur
Antunes, Luiz Henrique Martinez
Jardini, André Luiz
Miguel, Emilio de Castro
Béreš, Miloslav
Lambert, Carlos Salles
Andrade, Tiago Neves
Buchaim, Rogério Leone
Buchaim, Daniela Vieira
Pomini, Karina Torres
Dias, Jefferson Aparecido
Spressão, Daniele Raineri Mesquita Serva
Felix, Marcílio
Cardoso, Guinea Brasil Camargo
da Cunha, Marcelo Rodrigues
author_facet Iatecola, Amilton
Longhitano, Guilherme Arthur
Antunes, Luiz Henrique Martinez
Jardini, André Luiz
Miguel, Emilio de Castro
Béreš, Miloslav
Lambert, Carlos Salles
Andrade, Tiago Neves
Buchaim, Rogério Leone
Buchaim, Daniela Vieira
Pomini, Karina Torres
Dias, Jefferson Aparecido
Spressão, Daniele Raineri Mesquita Serva
Felix, Marcílio
Cardoso, Guinea Brasil Camargo
da Cunha, Marcelo Rodrigues
author_sort Iatecola, Amilton
collection PubMed
description Cobalt-base alloys (Co-Cr-Mo) are widely employed in dentistry and orthopedic implants due to their biocompatibility, high mechanical strength and wear resistance. The osseointegration of implants can be improved by surface modification techniques. However, complex geometries obtained by additive manufacturing (AM) limits the efficiency of mechanical-based surface modification techniques. Therefore, plasma immersion ion implantation (PIII) is the best alternative, creating nanotopography even in complex structures. In the present study, we report the osseointegration results in three conditions of the additively manufactured Co-Cr-Mo alloy: (i) as-built, (ii) after PIII, and (iii) coated with titanium (Ti) followed by PIII. The metallic samples were designed with a solid half and a porous half to observe the bone ingrowth in different surfaces. Our results revealed that all conditions presented cortical bone formation. The titanium-coated sample exhibited the best biomechanical results, which was attributed to the higher bone ingrowth percentage with almost all medullary canals filled with neoformed bone and the pores of the implant filled and surrounded by bone ingrowth. It was concluded that the metal alloys produced for AM are biocompatible and stimulate bone neoformation, especially when the Co-28Cr-6Mo alloy with a Ti-coated surface, nanostructured and anodized by PIII is used, whose technology has been shown to increase the osseointegration capacity of this implant.
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spelling pubmed-81561992021-05-28 Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing Iatecola, Amilton Longhitano, Guilherme Arthur Antunes, Luiz Henrique Martinez Jardini, André Luiz Miguel, Emilio de Castro Béreš, Miloslav Lambert, Carlos Salles Andrade, Tiago Neves Buchaim, Rogério Leone Buchaim, Daniela Vieira Pomini, Karina Torres Dias, Jefferson Aparecido Spressão, Daniele Raineri Mesquita Serva Felix, Marcílio Cardoso, Guinea Brasil Camargo da Cunha, Marcelo Rodrigues Pharmaceutics Article Cobalt-base alloys (Co-Cr-Mo) are widely employed in dentistry and orthopedic implants due to their biocompatibility, high mechanical strength and wear resistance. The osseointegration of implants can be improved by surface modification techniques. However, complex geometries obtained by additive manufacturing (AM) limits the efficiency of mechanical-based surface modification techniques. Therefore, plasma immersion ion implantation (PIII) is the best alternative, creating nanotopography even in complex structures. In the present study, we report the osseointegration results in three conditions of the additively manufactured Co-Cr-Mo alloy: (i) as-built, (ii) after PIII, and (iii) coated with titanium (Ti) followed by PIII. The metallic samples were designed with a solid half and a porous half to observe the bone ingrowth in different surfaces. Our results revealed that all conditions presented cortical bone formation. The titanium-coated sample exhibited the best biomechanical results, which was attributed to the higher bone ingrowth percentage with almost all medullary canals filled with neoformed bone and the pores of the implant filled and surrounded by bone ingrowth. It was concluded that the metal alloys produced for AM are biocompatible and stimulate bone neoformation, especially when the Co-28Cr-6Mo alloy with a Ti-coated surface, nanostructured and anodized by PIII is used, whose technology has been shown to increase the osseointegration capacity of this implant. MDPI 2021-05-14 /pmc/articles/PMC8156199/ /pubmed/34069254 http://dx.doi.org/10.3390/pharmaceutics13050724 Text en © 2021 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
Iatecola, Amilton
Longhitano, Guilherme Arthur
Antunes, Luiz Henrique Martinez
Jardini, André Luiz
Miguel, Emilio de Castro
Béreš, Miloslav
Lambert, Carlos Salles
Andrade, Tiago Neves
Buchaim, Rogério Leone
Buchaim, Daniela Vieira
Pomini, Karina Torres
Dias, Jefferson Aparecido
Spressão, Daniele Raineri Mesquita Serva
Felix, Marcílio
Cardoso, Guinea Brasil Camargo
da Cunha, Marcelo Rodrigues
Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing
title Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing
title_full Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing
title_fullStr Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing
title_full_unstemmed Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing
title_short Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing
title_sort osseointegration improvement of co-cr-mo alloy produced by additive manufacturing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8156199/
https://www.ncbi.nlm.nih.gov/pubmed/34069254
http://dx.doi.org/10.3390/pharmaceutics13050724
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