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Osteoinductive Moldable and Curable Bone Substitutes Based on Collagen, BMP-2 and Highly Porous Polylactide Granules, or a Mix of HAP/β-TCP

In dentistry, maxillofacial surgery, traumatology, and orthopedics, there is a need to use osteoplastic materials that have not only osteoinductive and osteoconductive properties but are also convenient for use. In the study, compositions based on collagen hydrogel were developed. Polylactide granul...

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Autores principales: Vasilyev, Andrey Vyacheslavovich, Kuznetsova, Valeriya Sergeevna, Bukharova, Tatyana Borisovna, Osidak, Egor Olegovich, Grigoriev, Timofei Evgenevich, Zagoskin, Yuriy Dmitrievich, Nedorubova, Irina Alekseevna, Domogatsky, Sergey Petrovich, Babichenko, Igor Ivanovich, Zorina, Oksana Aleksandrovna, Kutsev, Sergey Ivanovich, Chvalun, Sergei Nicolaevich, Kulakov, Anatoly Alekseevich, Losev, Fedor Fedorovich, Goldshtein, Dmitry Vadimovich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8621266/
https://www.ncbi.nlm.nih.gov/pubmed/34833275
http://dx.doi.org/10.3390/polym13223974
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author Vasilyev, Andrey Vyacheslavovich
Kuznetsova, Valeriya Sergeevna
Bukharova, Tatyana Borisovna
Osidak, Egor Olegovich
Grigoriev, Timofei Evgenevich
Zagoskin, Yuriy Dmitrievich
Nedorubova, Irina Alekseevna
Domogatsky, Sergey Petrovich
Babichenko, Igor Ivanovich
Zorina, Oksana Aleksandrovna
Kutsev, Sergey Ivanovich
Chvalun, Sergei Nicolaevich
Kulakov, Anatoly Alekseevich
Losev, Fedor Fedorovich
Goldshtein, Dmitry Vadimovich
author_facet Vasilyev, Andrey Vyacheslavovich
Kuznetsova, Valeriya Sergeevna
Bukharova, Tatyana Borisovna
Osidak, Egor Olegovich
Grigoriev, Timofei Evgenevich
Zagoskin, Yuriy Dmitrievich
Nedorubova, Irina Alekseevna
Domogatsky, Sergey Petrovich
Babichenko, Igor Ivanovich
Zorina, Oksana Aleksandrovna
Kutsev, Sergey Ivanovich
Chvalun, Sergei Nicolaevich
Kulakov, Anatoly Alekseevich
Losev, Fedor Fedorovich
Goldshtein, Dmitry Vadimovich
author_sort Vasilyev, Andrey Vyacheslavovich
collection PubMed
description In dentistry, maxillofacial surgery, traumatology, and orthopedics, there is a need to use osteoplastic materials that have not only osteoinductive and osteoconductive properties but are also convenient for use. In the study, compositions based on collagen hydrogel were developed. Polylactide granules (PLA) or a traditional bone graft, a mixture of hydroxyapatite and β-tricalcium phosphate (HAP/β-TCP), were used for gel filling to improve mechanical osteoconductive properties of compositions. The mechanical tests showed that collagen hydrogels filled with 12 wt% highly porous PLA granules (elastic modulus 373 ± 55 kPa) or 35 wt% HAP/β-TCP granules (elastic modulus 451 ± 32 kPa) had optimal manipulative properties. All composite components were cytocompatible. The cell’s viability was above 90%, and the components’ structure facilitated the cell’s surface adhesion. The bone morphogenetic protein-2 (BMP-2) provided osteoinductive composition properties. It was impregnated directly into the collagen hydrogel with the addition of fibronectin or inside porous PLA granules. The implantation of a collagen hydrogel with BMP-2 and PLA granules into a critical-size calvarial defect in rats led to the formation of the most significant volume of bone tissue: 61 ± 15%. It was almost 2.5 times more than in the groups where a collagen-fibronectin hydrogel with a mixture of HAP/β-TCP (25 ± 7%) or a fibronectin-free composition with porous PLA granules impregnated with BMP-2 (23 ± 8%) were used. Subcutaneous implantation of the compositions also showed their high biocompatibility and osteogenic potential in the absence of a bone environment. Thus, the collagen-fibronectin hydrogel with BMP-2 and PLA granules has optimal biocompatibility, osteogenic, and manipulative properties.
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spelling pubmed-86212662021-11-27 Osteoinductive Moldable and Curable Bone Substitutes Based on Collagen, BMP-2 and Highly Porous Polylactide Granules, or a Mix of HAP/β-TCP Vasilyev, Andrey Vyacheslavovich Kuznetsova, Valeriya Sergeevna Bukharova, Tatyana Borisovna Osidak, Egor Olegovich Grigoriev, Timofei Evgenevich Zagoskin, Yuriy Dmitrievich Nedorubova, Irina Alekseevna Domogatsky, Sergey Petrovich Babichenko, Igor Ivanovich Zorina, Oksana Aleksandrovna Kutsev, Sergey Ivanovich Chvalun, Sergei Nicolaevich Kulakov, Anatoly Alekseevich Losev, Fedor Fedorovich Goldshtein, Dmitry Vadimovich Polymers (Basel) Article In dentistry, maxillofacial surgery, traumatology, and orthopedics, there is a need to use osteoplastic materials that have not only osteoinductive and osteoconductive properties but are also convenient for use. In the study, compositions based on collagen hydrogel were developed. Polylactide granules (PLA) or a traditional bone graft, a mixture of hydroxyapatite and β-tricalcium phosphate (HAP/β-TCP), were used for gel filling to improve mechanical osteoconductive properties of compositions. The mechanical tests showed that collagen hydrogels filled with 12 wt% highly porous PLA granules (elastic modulus 373 ± 55 kPa) or 35 wt% HAP/β-TCP granules (elastic modulus 451 ± 32 kPa) had optimal manipulative properties. All composite components were cytocompatible. The cell’s viability was above 90%, and the components’ structure facilitated the cell’s surface adhesion. The bone morphogenetic protein-2 (BMP-2) provided osteoinductive composition properties. It was impregnated directly into the collagen hydrogel with the addition of fibronectin or inside porous PLA granules. The implantation of a collagen hydrogel with BMP-2 and PLA granules into a critical-size calvarial defect in rats led to the formation of the most significant volume of bone tissue: 61 ± 15%. It was almost 2.5 times more than in the groups where a collagen-fibronectin hydrogel with a mixture of HAP/β-TCP (25 ± 7%) or a fibronectin-free composition with porous PLA granules impregnated with BMP-2 (23 ± 8%) were used. Subcutaneous implantation of the compositions also showed their high biocompatibility and osteogenic potential in the absence of a bone environment. Thus, the collagen-fibronectin hydrogel with BMP-2 and PLA granules has optimal biocompatibility, osteogenic, and manipulative properties. MDPI 2021-11-17 /pmc/articles/PMC8621266/ /pubmed/34833275 http://dx.doi.org/10.3390/polym13223974 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
Vasilyev, Andrey Vyacheslavovich
Kuznetsova, Valeriya Sergeevna
Bukharova, Tatyana Borisovna
Osidak, Egor Olegovich
Grigoriev, Timofei Evgenevich
Zagoskin, Yuriy Dmitrievich
Nedorubova, Irina Alekseevna
Domogatsky, Sergey Petrovich
Babichenko, Igor Ivanovich
Zorina, Oksana Aleksandrovna
Kutsev, Sergey Ivanovich
Chvalun, Sergei Nicolaevich
Kulakov, Anatoly Alekseevich
Losev, Fedor Fedorovich
Goldshtein, Dmitry Vadimovich
Osteoinductive Moldable and Curable Bone Substitutes Based on Collagen, BMP-2 and Highly Porous Polylactide Granules, or a Mix of HAP/β-TCP
title Osteoinductive Moldable and Curable Bone Substitutes Based on Collagen, BMP-2 and Highly Porous Polylactide Granules, or a Mix of HAP/β-TCP
title_full Osteoinductive Moldable and Curable Bone Substitutes Based on Collagen, BMP-2 and Highly Porous Polylactide Granules, or a Mix of HAP/β-TCP
title_fullStr Osteoinductive Moldable and Curable Bone Substitutes Based on Collagen, BMP-2 and Highly Porous Polylactide Granules, or a Mix of HAP/β-TCP
title_full_unstemmed Osteoinductive Moldable and Curable Bone Substitutes Based on Collagen, BMP-2 and Highly Porous Polylactide Granules, or a Mix of HAP/β-TCP
title_short Osteoinductive Moldable and Curable Bone Substitutes Based on Collagen, BMP-2 and Highly Porous Polylactide Granules, or a Mix of HAP/β-TCP
title_sort osteoinductive moldable and curable bone substitutes based on collagen, bmp-2 and highly porous polylactide granules, or a mix of hap/β-tcp
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8621266/
https://www.ncbi.nlm.nih.gov/pubmed/34833275
http://dx.doi.org/10.3390/polym13223974
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