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3D-printed scaffold combined to 2D osteoinductive coatings to repair a critical-size mandibular bone defect

The reconstruction of large bone defects (12 cm(3)) remains a challenge for clinicians. We developed a new critical-size mandibular bone defect model on a minipig, close to human clinical issues. We analyzed the bone reconstruction obtained by a 3D-printed scaffold made of clinical-grade polylactic...

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Autores principales: Bouyer, M., Garot, C., Machillot, P., Vollaire, J., Fitzpatrick, V., Morand, S., Boutonnat, J., Josserand, V., Bettega, G., Picart, C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8173095/
https://www.ncbi.nlm.nih.gov/pubmed/34124641
http://dx.doi.org/10.1016/j.mtbio.2021.100113
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author Bouyer, M.
Garot, C.
Machillot, P.
Vollaire, J.
Fitzpatrick, V.
Morand, S.
Boutonnat, J.
Josserand, V.
Bettega, G.
Picart, C.
author_facet Bouyer, M.
Garot, C.
Machillot, P.
Vollaire, J.
Fitzpatrick, V.
Morand, S.
Boutonnat, J.
Josserand, V.
Bettega, G.
Picart, C.
author_sort Bouyer, M.
collection PubMed
description The reconstruction of large bone defects (12 cm(3)) remains a challenge for clinicians. We developed a new critical-size mandibular bone defect model on a minipig, close to human clinical issues. We analyzed the bone reconstruction obtained by a 3D-printed scaffold made of clinical-grade polylactic acid (PLA), coated with a polyelectrolyte film delivering an osteogenic bioactive molecule (BMP-2). We compared the results (computed tomography scans, microcomputed tomography scans, histology) to the gold standard solution, bone autograft. We demonstrated that the dose of BMP-2 delivered from the scaffold significantly influenced the amount of regenerated bone and the repair kinetics, with a clear BMP-2 dose-dependence. Bone was homogeneously formed inside the scaffold without ectopic bone formation. The bone repair was as good as for the bone autograft. The BMP-2 doses applied in our study were reduced 20- to 75-fold compared to the commercial collagen sponges used in the current clinical applications, without any adverse effects. Three-dimensional printed PLA scaffolds loaded with reduced doses of BMP-2 may be a safe and simple solution for large bone defects faced in the clinic.
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spelling pubmed-81730952021-06-11 3D-printed scaffold combined to 2D osteoinductive coatings to repair a critical-size mandibular bone defect Bouyer, M. Garot, C. Machillot, P. Vollaire, J. Fitzpatrick, V. Morand, S. Boutonnat, J. Josserand, V. Bettega, G. Picart, C. Mater Today Bio Full Length Article The reconstruction of large bone defects (12 cm(3)) remains a challenge for clinicians. We developed a new critical-size mandibular bone defect model on a minipig, close to human clinical issues. We analyzed the bone reconstruction obtained by a 3D-printed scaffold made of clinical-grade polylactic acid (PLA), coated with a polyelectrolyte film delivering an osteogenic bioactive molecule (BMP-2). We compared the results (computed tomography scans, microcomputed tomography scans, histology) to the gold standard solution, bone autograft. We demonstrated that the dose of BMP-2 delivered from the scaffold significantly influenced the amount of regenerated bone and the repair kinetics, with a clear BMP-2 dose-dependence. Bone was homogeneously formed inside the scaffold without ectopic bone formation. The bone repair was as good as for the bone autograft. The BMP-2 doses applied in our study were reduced 20- to 75-fold compared to the commercial collagen sponges used in the current clinical applications, without any adverse effects. Three-dimensional printed PLA scaffolds loaded with reduced doses of BMP-2 may be a safe and simple solution for large bone defects faced in the clinic. Elsevier 2021-05-04 /pmc/articles/PMC8173095/ /pubmed/34124641 http://dx.doi.org/10.1016/j.mtbio.2021.100113 Text en © 2021 Published by Elsevier Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Full Length Article
Bouyer, M.
Garot, C.
Machillot, P.
Vollaire, J.
Fitzpatrick, V.
Morand, S.
Boutonnat, J.
Josserand, V.
Bettega, G.
Picart, C.
3D-printed scaffold combined to 2D osteoinductive coatings to repair a critical-size mandibular bone defect
title 3D-printed scaffold combined to 2D osteoinductive coatings to repair a critical-size mandibular bone defect
title_full 3D-printed scaffold combined to 2D osteoinductive coatings to repair a critical-size mandibular bone defect
title_fullStr 3D-printed scaffold combined to 2D osteoinductive coatings to repair a critical-size mandibular bone defect
title_full_unstemmed 3D-printed scaffold combined to 2D osteoinductive coatings to repair a critical-size mandibular bone defect
title_short 3D-printed scaffold combined to 2D osteoinductive coatings to repair a critical-size mandibular bone defect
title_sort 3d-printed scaffold combined to 2d osteoinductive coatings to repair a critical-size mandibular bone defect
topic Full Length Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8173095/
https://www.ncbi.nlm.nih.gov/pubmed/34124641
http://dx.doi.org/10.1016/j.mtbio.2021.100113
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