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Biomimetic Remineralized Three-Dimensional Collagen Bone Matrices with an Enhanced Osteostimulating Effect

Bone grafts with a high potential for osseointegration, capable of providing a complete and effective regeneration of bone tissue, remain an urgent and unresolved issue. The presented work proposes an approach to develop composite biomimetic bone material for reconstructive surgery by deposition (re...

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Autores principales: Fadeeva, Irina S., Teterina, Anastasia Yu., Minaychev, Vladislav V., Senotov, Anatoliy S., Smirnov, Igor V., Fadeev, Roman S., Smirnova, Polina V., Menukhov, Vladislav O., Lomovskaya, Yana V., Akatov, Vladimir S., Barinov, Sergey M., Komlev, Vladimir S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10046016/
https://www.ncbi.nlm.nih.gov/pubmed/36975321
http://dx.doi.org/10.3390/biomimetics8010091
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author Fadeeva, Irina S.
Teterina, Anastasia Yu.
Minaychev, Vladislav V.
Senotov, Anatoliy S.
Smirnov, Igor V.
Fadeev, Roman S.
Smirnova, Polina V.
Menukhov, Vladislav O.
Lomovskaya, Yana V.
Akatov, Vladimir S.
Barinov, Sergey M.
Komlev, Vladimir S.
author_facet Fadeeva, Irina S.
Teterina, Anastasia Yu.
Minaychev, Vladislav V.
Senotov, Anatoliy S.
Smirnov, Igor V.
Fadeev, Roman S.
Smirnova, Polina V.
Menukhov, Vladislav O.
Lomovskaya, Yana V.
Akatov, Vladimir S.
Barinov, Sergey M.
Komlev, Vladimir S.
author_sort Fadeeva, Irina S.
collection PubMed
description Bone grafts with a high potential for osseointegration, capable of providing a complete and effective regeneration of bone tissue, remain an urgent and unresolved issue. The presented work proposes an approach to develop composite biomimetic bone material for reconstructive surgery by deposition (remineralization) on the surface of high-purity, demineralized bone collagen matrix calcium phosphate layers. Histological and elemental analysis have shown reproduction of the bone tissue matrix architectonics, and a high-purity degree of the obtained collagen scaffolds; the cell culture and confocal microscopy have demonstrated a high biocompatibility of the materials obtained. Adsorption spectroscopy, scanning electron microscopy, microcomputed tomography (microCT) and infrared spectroscopy, and X-ray diffraction have proven the efficiency of the deposition of calcium phosphates on the surface of bone collagen scaffolds. Cell culture and confocal microscopy methods have shown high biocompatibility of both demineralized and remineralized bone matrices. In the model of heterotopic implantation in rats, at the term of seven weeks, an intensive intratrabecular infiltration of calcium phosphate precipitates, and a pronounced synthetic activity of osteoblast remodeling and rebuilding implanted materials, were revealed in remineralized bone collagen matrices in contrast to demineralized ones. Thus, remineralization of highly purified demineralized bone matrices significantly enhanced their osteostimulating ability. The data obtained are of interest for the creation of new highly effective osteoplastic materials for bone tissue regeneration and augmentation.
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spelling pubmed-100460162023-03-29 Biomimetic Remineralized Three-Dimensional Collagen Bone Matrices with an Enhanced Osteostimulating Effect Fadeeva, Irina S. Teterina, Anastasia Yu. Minaychev, Vladislav V. Senotov, Anatoliy S. Smirnov, Igor V. Fadeev, Roman S. Smirnova, Polina V. Menukhov, Vladislav O. Lomovskaya, Yana V. Akatov, Vladimir S. Barinov, Sergey M. Komlev, Vladimir S. Biomimetics (Basel) Article Bone grafts with a high potential for osseointegration, capable of providing a complete and effective regeneration of bone tissue, remain an urgent and unresolved issue. The presented work proposes an approach to develop composite biomimetic bone material for reconstructive surgery by deposition (remineralization) on the surface of high-purity, demineralized bone collagen matrix calcium phosphate layers. Histological and elemental analysis have shown reproduction of the bone tissue matrix architectonics, and a high-purity degree of the obtained collagen scaffolds; the cell culture and confocal microscopy have demonstrated a high biocompatibility of the materials obtained. Adsorption spectroscopy, scanning electron microscopy, microcomputed tomography (microCT) and infrared spectroscopy, and X-ray diffraction have proven the efficiency of the deposition of calcium phosphates on the surface of bone collagen scaffolds. Cell culture and confocal microscopy methods have shown high biocompatibility of both demineralized and remineralized bone matrices. In the model of heterotopic implantation in rats, at the term of seven weeks, an intensive intratrabecular infiltration of calcium phosphate precipitates, and a pronounced synthetic activity of osteoblast remodeling and rebuilding implanted materials, were revealed in remineralized bone collagen matrices in contrast to demineralized ones. Thus, remineralization of highly purified demineralized bone matrices significantly enhanced their osteostimulating ability. The data obtained are of interest for the creation of new highly effective osteoplastic materials for bone tissue regeneration and augmentation. MDPI 2023-02-23 /pmc/articles/PMC10046016/ /pubmed/36975321 http://dx.doi.org/10.3390/biomimetics8010091 Text en © 2023 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
Fadeeva, Irina S.
Teterina, Anastasia Yu.
Minaychev, Vladislav V.
Senotov, Anatoliy S.
Smirnov, Igor V.
Fadeev, Roman S.
Smirnova, Polina V.
Menukhov, Vladislav O.
Lomovskaya, Yana V.
Akatov, Vladimir S.
Barinov, Sergey M.
Komlev, Vladimir S.
Biomimetic Remineralized Three-Dimensional Collagen Bone Matrices with an Enhanced Osteostimulating Effect
title Biomimetic Remineralized Three-Dimensional Collagen Bone Matrices with an Enhanced Osteostimulating Effect
title_full Biomimetic Remineralized Three-Dimensional Collagen Bone Matrices with an Enhanced Osteostimulating Effect
title_fullStr Biomimetic Remineralized Three-Dimensional Collagen Bone Matrices with an Enhanced Osteostimulating Effect
title_full_unstemmed Biomimetic Remineralized Three-Dimensional Collagen Bone Matrices with an Enhanced Osteostimulating Effect
title_short Biomimetic Remineralized Three-Dimensional Collagen Bone Matrices with an Enhanced Osteostimulating Effect
title_sort biomimetic remineralized three-dimensional collagen bone matrices with an enhanced osteostimulating effect
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10046016/
https://www.ncbi.nlm.nih.gov/pubmed/36975321
http://dx.doi.org/10.3390/biomimetics8010091
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