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Long Bone Defect Filling with Bioactive Degradable 3D-Implant: Experimental Study

Previously, 3D-printed bone grafts made of titanium alloy with bioactive coating has shown great potential for the restoration of bone defects. Implanted into a medullary canal titanium graft with cellular structure demonstrated stimulation of the reparative osteogenesis and successful osseointegrat...

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Autores principales: Popkov, Arnold, Kononovich, Natalia, Dubinenko, Gleb, Gorbach, Elena, Shastov, Alexander, Tverdokhlebov, Sergei, Popkov, Dmitry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10123725/
https://www.ncbi.nlm.nih.gov/pubmed/37092390
http://dx.doi.org/10.3390/biomimetics8020138
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author Popkov, Arnold
Kononovich, Natalia
Dubinenko, Gleb
Gorbach, Elena
Shastov, Alexander
Tverdokhlebov, Sergei
Popkov, Dmitry
author_facet Popkov, Arnold
Kononovich, Natalia
Dubinenko, Gleb
Gorbach, Elena
Shastov, Alexander
Tverdokhlebov, Sergei
Popkov, Dmitry
author_sort Popkov, Arnold
collection PubMed
description Previously, 3D-printed bone grafts made of titanium alloy with bioactive coating has shown great potential for the restoration of bone defects. Implanted into a medullary canal titanium graft with cellular structure demonstrated stimulation of the reparative osteogenesis and successful osseointegration of the graft into a single bone-implant block. The purpose of this study was to investigate osseointegration of a 3D-printed degradable polymeric implant with cellular structure as preclinical testing of a new technique for bone defect restoration. During an experimental study in sheep, a 20 mm-long segmental tibial defect was filled with an original cylindrical implant with cellular structure made of polycaprolactone coated with hydroxyapatite. X-ray radiographs demonstrated reparative bone regeneration from the periosteum lying on the periphery of cylindrical implant to its center in a week after the surgery. Cellular structure of the implant was fully filled with newly-formed bone tissue on the 4th week after the surgery. The bone tissue regeneration from the proximal and distal bone fragments was evident on 3rd week. This provides insight into the use of bioactive degradable implants for the restoration of segmental bone defects. Degradable implant with bioactive coating implanted into a long bone segmental defect provides stimulation of reparative osteogenesis and osseointegration into the single implant-bone block.
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spelling pubmed-101237252023-04-25 Long Bone Defect Filling with Bioactive Degradable 3D-Implant: Experimental Study Popkov, Arnold Kononovich, Natalia Dubinenko, Gleb Gorbach, Elena Shastov, Alexander Tverdokhlebov, Sergei Popkov, Dmitry Biomimetics (Basel) Article Previously, 3D-printed bone grafts made of titanium alloy with bioactive coating has shown great potential for the restoration of bone defects. Implanted into a medullary canal titanium graft with cellular structure demonstrated stimulation of the reparative osteogenesis and successful osseointegration of the graft into a single bone-implant block. The purpose of this study was to investigate osseointegration of a 3D-printed degradable polymeric implant with cellular structure as preclinical testing of a new technique for bone defect restoration. During an experimental study in sheep, a 20 mm-long segmental tibial defect was filled with an original cylindrical implant with cellular structure made of polycaprolactone coated with hydroxyapatite. X-ray radiographs demonstrated reparative bone regeneration from the periosteum lying on the periphery of cylindrical implant to its center in a week after the surgery. Cellular structure of the implant was fully filled with newly-formed bone tissue on the 4th week after the surgery. The bone tissue regeneration from the proximal and distal bone fragments was evident on 3rd week. This provides insight into the use of bioactive degradable implants for the restoration of segmental bone defects. Degradable implant with bioactive coating implanted into a long bone segmental defect provides stimulation of reparative osteogenesis and osseointegration into the single implant-bone block. MDPI 2023-03-28 /pmc/articles/PMC10123725/ /pubmed/37092390 http://dx.doi.org/10.3390/biomimetics8020138 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
Popkov, Arnold
Kononovich, Natalia
Dubinenko, Gleb
Gorbach, Elena
Shastov, Alexander
Tverdokhlebov, Sergei
Popkov, Dmitry
Long Bone Defect Filling with Bioactive Degradable 3D-Implant: Experimental Study
title Long Bone Defect Filling with Bioactive Degradable 3D-Implant: Experimental Study
title_full Long Bone Defect Filling with Bioactive Degradable 3D-Implant: Experimental Study
title_fullStr Long Bone Defect Filling with Bioactive Degradable 3D-Implant: Experimental Study
title_full_unstemmed Long Bone Defect Filling with Bioactive Degradable 3D-Implant: Experimental Study
title_short Long Bone Defect Filling with Bioactive Degradable 3D-Implant: Experimental Study
title_sort long bone defect filling with bioactive degradable 3d-implant: experimental study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10123725/
https://www.ncbi.nlm.nih.gov/pubmed/37092390
http://dx.doi.org/10.3390/biomimetics8020138
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