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Early bone growth on the surface of titanium implants in rat femur is enhanced by an amorphous diamond coating

BACKGROUND AND PURPOSE: Amorphous diamond (AD) is a durable and compatible biomaterial for joint prostheses. Knowledge regarding bone growth on AD-coated implants and their early-stage osseointegration is poor. We investigated bone growth on AD-coated cementless intramedullary implants implanted in...

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Autores principales: Jaatinen, Jarkko JP, Korhonen, Rami K, Pelttari, Alpo, Helminen, Heikki J, Korhonen, Hannu, Lappalainen, Reijo, Kröger, Heikki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Informa Healthcare 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3237044/
https://www.ncbi.nlm.nih.gov/pubmed/21504369
http://dx.doi.org/10.3109/17453674.2011.579522
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author Jaatinen, Jarkko JP
Korhonen, Rami K
Pelttari, Alpo
Helminen, Heikki J
Korhonen, Hannu
Lappalainen, Reijo
Kröger, Heikki
author_facet Jaatinen, Jarkko JP
Korhonen, Rami K
Pelttari, Alpo
Helminen, Heikki J
Korhonen, Hannu
Lappalainen, Reijo
Kröger, Heikki
author_sort Jaatinen, Jarkko JP
collection PubMed
description BACKGROUND AND PURPOSE: Amorphous diamond (AD) is a durable and compatible biomaterial for joint prostheses. Knowledge regarding bone growth on AD-coated implants and their early-stage osseointegration is poor. We investigated bone growth on AD-coated cementless intramedullary implants implanted in rats. Titanium was chosen as a reference due to its well-known performance. MATERIALS AND METHODS: We placed AD-coated and non-coated titanium implants (R(a) ≈ 0.2 μm) into the femoral bone marrow of 25 rats. The animals were divided in 2 groups according to implant coating and they were killed after 4 or 12 weeks. The osseointegration of the implants was examined from hard tissue specimens by measuring the new bone formation on their surface. RESULTS: 4 weeks after the operation, the thickness of new bone in the AD-coated group was greater than that in the non-coated group (15.3 (SD 7.1) μm vs. 7.6 (SD 6.0) μm). 12 weeks after the operation, the thickness of new bone was similar in the non-coated group and in the AD-coated group. INTERPRETATION: We conclude that AD coating of femoral implants can enhance bone ongrowth in rats in the acute, early stage after the operation and might be an improvement over earlier coatings.
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spelling pubmed-32370442012-01-03 Early bone growth on the surface of titanium implants in rat femur is enhanced by an amorphous diamond coating Jaatinen, Jarkko JP Korhonen, Rami K Pelttari, Alpo Helminen, Heikki J Korhonen, Hannu Lappalainen, Reijo Kröger, Heikki Acta Orthop Article BACKGROUND AND PURPOSE: Amorphous diamond (AD) is a durable and compatible biomaterial for joint prostheses. Knowledge regarding bone growth on AD-coated implants and their early-stage osseointegration is poor. We investigated bone growth on AD-coated cementless intramedullary implants implanted in rats. Titanium was chosen as a reference due to its well-known performance. MATERIALS AND METHODS: We placed AD-coated and non-coated titanium implants (R(a) ≈ 0.2 μm) into the femoral bone marrow of 25 rats. The animals were divided in 2 groups according to implant coating and they were killed after 4 or 12 weeks. The osseointegration of the implants was examined from hard tissue specimens by measuring the new bone formation on their surface. RESULTS: 4 weeks after the operation, the thickness of new bone in the AD-coated group was greater than that in the non-coated group (15.3 (SD 7.1) μm vs. 7.6 (SD 6.0) μm). 12 weeks after the operation, the thickness of new bone was similar in the non-coated group and in the AD-coated group. INTERPRETATION: We conclude that AD coating of femoral implants can enhance bone ongrowth in rats in the acute, early stage after the operation and might be an improvement over earlier coatings. Informa Healthcare 2011-08 2011-09-02 /pmc/articles/PMC3237044/ /pubmed/21504369 http://dx.doi.org/10.3109/17453674.2011.579522 Text en Copyright: © Nordic Orthopaedic Federation http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the source is credited.
spellingShingle Article
Jaatinen, Jarkko JP
Korhonen, Rami K
Pelttari, Alpo
Helminen, Heikki J
Korhonen, Hannu
Lappalainen, Reijo
Kröger, Heikki
Early bone growth on the surface of titanium implants in rat femur is enhanced by an amorphous diamond coating
title Early bone growth on the surface of titanium implants in rat femur is enhanced by an amorphous diamond coating
title_full Early bone growth on the surface of titanium implants in rat femur is enhanced by an amorphous diamond coating
title_fullStr Early bone growth on the surface of titanium implants in rat femur is enhanced by an amorphous diamond coating
title_full_unstemmed Early bone growth on the surface of titanium implants in rat femur is enhanced by an amorphous diamond coating
title_short Early bone growth on the surface of titanium implants in rat femur is enhanced by an amorphous diamond coating
title_sort early bone growth on the surface of titanium implants in rat femur is enhanced by an amorphous diamond coating
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3237044/
https://www.ncbi.nlm.nih.gov/pubmed/21504369
http://dx.doi.org/10.3109/17453674.2011.579522
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