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Hybrid Mineral/Organic Material Induces Bone Bridging and Bone Volume Augmentation in Rat Calvarial Critical Size Defects

In craniofacial bone defects, the promotion of bone volume augmentation remains a challenge. Finding strategies for bone regeneration such as combining resorbable minerals with organic polymers would contribute to solving the bone volume roadblock. Here, dicalcium phosphate dihydrate, chitosan and h...

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Autores principales: Dubus, Marie, Scomazzon, Loïc, Ledouble, Charlotte, Braux, Julien, Beljebbar, Abdelilah, Van Gulick, Laurence, Baldit, Adrien, Gorin, Caroline, Alem, Halima, Bouland, Nicole, Britton, Marissa, Schiavi, Jessica, Vaughan, Ted J., Mauprivez, Cédric, Kerdjoudj, Halima
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9497222/
https://www.ncbi.nlm.nih.gov/pubmed/36139439
http://dx.doi.org/10.3390/cells11182865
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author Dubus, Marie
Scomazzon, Loïc
Ledouble, Charlotte
Braux, Julien
Beljebbar, Abdelilah
Van Gulick, Laurence
Baldit, Adrien
Gorin, Caroline
Alem, Halima
Bouland, Nicole
Britton, Marissa
Schiavi, Jessica
Vaughan, Ted J.
Mauprivez, Cédric
Kerdjoudj, Halima
author_facet Dubus, Marie
Scomazzon, Loïc
Ledouble, Charlotte
Braux, Julien
Beljebbar, Abdelilah
Van Gulick, Laurence
Baldit, Adrien
Gorin, Caroline
Alem, Halima
Bouland, Nicole
Britton, Marissa
Schiavi, Jessica
Vaughan, Ted J.
Mauprivez, Cédric
Kerdjoudj, Halima
author_sort Dubus, Marie
collection PubMed
description In craniofacial bone defects, the promotion of bone volume augmentation remains a challenge. Finding strategies for bone regeneration such as combining resorbable minerals with organic polymers would contribute to solving the bone volume roadblock. Here, dicalcium phosphate dihydrate, chitosan and hyaluronic acid were used to functionalize a bone-side collagen membrane. Despite an increase in the release of inflammatory mediators by human circulating monocytes, the in vivo implantation of the functionalized membrane allowed the repair of a critical-sized defect in a calvaria rat model with de novo bone exhibiting physiological matrix composition and structural organization. Microtomography, histological and Raman analysis combined with nanoindentation testing revealed an increase in bone volume in the presence of the functionalized membrane and the formation of woven bone after eight weeks of implantation; these data showed the potential of dicalcium phosphate dihydrate, chitosan and hyaluronic acid to induce an efficient repair of critical-sized bone defects and establish the importance of thorough multi-scale characterization in assessing biomaterial outcomes in animal models.
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spelling pubmed-94972222022-09-23 Hybrid Mineral/Organic Material Induces Bone Bridging and Bone Volume Augmentation in Rat Calvarial Critical Size Defects Dubus, Marie Scomazzon, Loïc Ledouble, Charlotte Braux, Julien Beljebbar, Abdelilah Van Gulick, Laurence Baldit, Adrien Gorin, Caroline Alem, Halima Bouland, Nicole Britton, Marissa Schiavi, Jessica Vaughan, Ted J. Mauprivez, Cédric Kerdjoudj, Halima Cells Article In craniofacial bone defects, the promotion of bone volume augmentation remains a challenge. Finding strategies for bone regeneration such as combining resorbable minerals with organic polymers would contribute to solving the bone volume roadblock. Here, dicalcium phosphate dihydrate, chitosan and hyaluronic acid were used to functionalize a bone-side collagen membrane. Despite an increase in the release of inflammatory mediators by human circulating monocytes, the in vivo implantation of the functionalized membrane allowed the repair of a critical-sized defect in a calvaria rat model with de novo bone exhibiting physiological matrix composition and structural organization. Microtomography, histological and Raman analysis combined with nanoindentation testing revealed an increase in bone volume in the presence of the functionalized membrane and the formation of woven bone after eight weeks of implantation; these data showed the potential of dicalcium phosphate dihydrate, chitosan and hyaluronic acid to induce an efficient repair of critical-sized bone defects and establish the importance of thorough multi-scale characterization in assessing biomaterial outcomes in animal models. MDPI 2022-09-14 /pmc/articles/PMC9497222/ /pubmed/36139439 http://dx.doi.org/10.3390/cells11182865 Text en © 2022 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
Dubus, Marie
Scomazzon, Loïc
Ledouble, Charlotte
Braux, Julien
Beljebbar, Abdelilah
Van Gulick, Laurence
Baldit, Adrien
Gorin, Caroline
Alem, Halima
Bouland, Nicole
Britton, Marissa
Schiavi, Jessica
Vaughan, Ted J.
Mauprivez, Cédric
Kerdjoudj, Halima
Hybrid Mineral/Organic Material Induces Bone Bridging and Bone Volume Augmentation in Rat Calvarial Critical Size Defects
title Hybrid Mineral/Organic Material Induces Bone Bridging and Bone Volume Augmentation in Rat Calvarial Critical Size Defects
title_full Hybrid Mineral/Organic Material Induces Bone Bridging and Bone Volume Augmentation in Rat Calvarial Critical Size Defects
title_fullStr Hybrid Mineral/Organic Material Induces Bone Bridging and Bone Volume Augmentation in Rat Calvarial Critical Size Defects
title_full_unstemmed Hybrid Mineral/Organic Material Induces Bone Bridging and Bone Volume Augmentation in Rat Calvarial Critical Size Defects
title_short Hybrid Mineral/Organic Material Induces Bone Bridging and Bone Volume Augmentation in Rat Calvarial Critical Size Defects
title_sort hybrid mineral/organic material induces bone bridging and bone volume augmentation in rat calvarial critical size defects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9497222/
https://www.ncbi.nlm.nih.gov/pubmed/36139439
http://dx.doi.org/10.3390/cells11182865
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