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Effect of rhBMP-2 applied with a 3D-printed titanium implant on new bone formation in rabbit calvarium

OBJECTIVE: This study sought to compare the biocompatibility of a three-dimensional (3D)-printed titanium implant with a conventional machined titanium product, as well as the effect of such implant applied with recombinant human Bone Morphogenetic Protein Type 2 (rhBMP-2) for guided bone regenerati...

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Autores principales: Jaeyoung, RYU, KANG, Hyo-Sun, KANG, Byung-Hun, JUNG, Seunggon, KOOK, Min-Suk, Hee-Kyun, OH, JUNG, Ji-Yeon, PARK, Hong-Ju
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Faculdade De Odontologia De Bauru - USP 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8428818/
https://www.ncbi.nlm.nih.gov/pubmed/34524369
http://dx.doi.org/10.1590/1678-7757-2020-1092
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author Jaeyoung, RYU
KANG, Hyo-Sun
KANG, Byung-Hun
JUNG, Seunggon
KOOK, Min-Suk
Hee-Kyun, OH
JUNG, Ji-Yeon
PARK, Hong-Ju
author_facet Jaeyoung, RYU
KANG, Hyo-Sun
KANG, Byung-Hun
JUNG, Seunggon
KOOK, Min-Suk
Hee-Kyun, OH
JUNG, Ji-Yeon
PARK, Hong-Ju
author_sort Jaeyoung, RYU
collection PubMed
description OBJECTIVE: This study sought to compare the biocompatibility of a three-dimensional (3D)-printed titanium implant with a conventional machined titanium product, as well as the effect of such implant applied with recombinant human Bone Morphogenetic Protein Type 2 (rhBMP-2) for guided bone regeneration. METHODOLOGY: Disk-shaped titanium specimens fabricated either by the conventional machining technique or by the 3D-printing technique were compared by MC3T3-E1 cells cytotoxicity assay. New bone formation was evaluated using a rapid prototype titanium cap applied to the calvaria of 10 rabbits, which were divided into two groups: one including an atelopeptide collagen plug on one side of the cap (group I) and the other including a plug with rhBMP-2 on the other side (group II). At six and 12 weeks after euthanasia, rabbits calvaria underwent morphometric analysis through radiological and histological examination. RESULTS: Through the cytotoxicity assay, we identified a significantly higher number of MC3T3-E1 cells in the 3D-printed specimen when compared to the machined specimen after 48 hours of culture. Moreover, morphometric analysis indicated significantly greater bone formation at week 12 on the side where rhBMP-2 was applied when evaluating the upper portion immediately below the cap. CONCLUSION: The results suggest that 3D-printed titanium implant applied with rhBMP-2 enables new bone formation.
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spelling pubmed-84288182021-09-10 Effect of rhBMP-2 applied with a 3D-printed titanium implant on new bone formation in rabbit calvarium Jaeyoung, RYU KANG, Hyo-Sun KANG, Byung-Hun JUNG, Seunggon KOOK, Min-Suk Hee-Kyun, OH JUNG, Ji-Yeon PARK, Hong-Ju J Appl Oral Sci Original Article OBJECTIVE: This study sought to compare the biocompatibility of a three-dimensional (3D)-printed titanium implant with a conventional machined titanium product, as well as the effect of such implant applied with recombinant human Bone Morphogenetic Protein Type 2 (rhBMP-2) for guided bone regeneration. METHODOLOGY: Disk-shaped titanium specimens fabricated either by the conventional machining technique or by the 3D-printing technique were compared by MC3T3-E1 cells cytotoxicity assay. New bone formation was evaluated using a rapid prototype titanium cap applied to the calvaria of 10 rabbits, which were divided into two groups: one including an atelopeptide collagen plug on one side of the cap (group I) and the other including a plug with rhBMP-2 on the other side (group II). At six and 12 weeks after euthanasia, rabbits calvaria underwent morphometric analysis through radiological and histological examination. RESULTS: Through the cytotoxicity assay, we identified a significantly higher number of MC3T3-E1 cells in the 3D-printed specimen when compared to the machined specimen after 48 hours of culture. Moreover, morphometric analysis indicated significantly greater bone formation at week 12 on the side where rhBMP-2 was applied when evaluating the upper portion immediately below the cap. CONCLUSION: The results suggest that 3D-printed titanium implant applied with rhBMP-2 enables new bone formation. Faculdade De Odontologia De Bauru - USP 2021-09-08 /pmc/articles/PMC8428818/ /pubmed/34524369 http://dx.doi.org/10.1590/1678-7757-2020-1092 Text en https://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Jaeyoung, RYU
KANG, Hyo-Sun
KANG, Byung-Hun
JUNG, Seunggon
KOOK, Min-Suk
Hee-Kyun, OH
JUNG, Ji-Yeon
PARK, Hong-Ju
Effect of rhBMP-2 applied with a 3D-printed titanium implant on new bone formation in rabbit calvarium
title Effect of rhBMP-2 applied with a 3D-printed titanium implant on new bone formation in rabbit calvarium
title_full Effect of rhBMP-2 applied with a 3D-printed titanium implant on new bone formation in rabbit calvarium
title_fullStr Effect of rhBMP-2 applied with a 3D-printed titanium implant on new bone formation in rabbit calvarium
title_full_unstemmed Effect of rhBMP-2 applied with a 3D-printed titanium implant on new bone formation in rabbit calvarium
title_short Effect of rhBMP-2 applied with a 3D-printed titanium implant on new bone formation in rabbit calvarium
title_sort effect of rhbmp-2 applied with a 3d-printed titanium implant on new bone formation in rabbit calvarium
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8428818/
https://www.ncbi.nlm.nih.gov/pubmed/34524369
http://dx.doi.org/10.1590/1678-7757-2020-1092
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