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Mineralization in a Critical Size Bone-Gap in Sheep Tibia Improved by a Chitosan-Calcium Phosphate-Based Composite as Compared to Predicate Device

Deacetylated chitin derivatives have been widely studied for tissue engineering purposes. This study aimed to compare the efficacy of an injectable product containing a 50% deacetylated chitin derivative (BoneReg-Inject™) and an existing product (chronOS Inject(®)) serving as a predicate device. A s...

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Autores principales: Örlygsson, Gissur, Laxdal, Elín H., Kárason, Sigurbergur, Dagbjartsson, Atli, Gunnarsson, Eggert, Ng, Chuen-How, Einarsson, Jón M., Gíslason, Jóhannes, Jónsson, Halldór
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8836995/
https://www.ncbi.nlm.nih.gov/pubmed/35160784
http://dx.doi.org/10.3390/ma15030838
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author Örlygsson, Gissur
Laxdal, Elín H.
Kárason, Sigurbergur
Dagbjartsson, Atli
Gunnarsson, Eggert
Ng, Chuen-How
Einarsson, Jón M.
Gíslason, Jóhannes
Jónsson, Halldór
author_facet Örlygsson, Gissur
Laxdal, Elín H.
Kárason, Sigurbergur
Dagbjartsson, Atli
Gunnarsson, Eggert
Ng, Chuen-How
Einarsson, Jón M.
Gíslason, Jóhannes
Jónsson, Halldór
author_sort Örlygsson, Gissur
collection PubMed
description Deacetylated chitin derivatives have been widely studied for tissue engineering purposes. This study aimed to compare the efficacy of an injectable product containing a 50% deacetylated chitin derivative (BoneReg-Inject™) and an existing product (chronOS Inject(®)) serving as a predicate device. A sheep model with a critical size drill hole in the tibial plateau was used. Holes of 8 mm diameter and 30 mm length were drilled bilaterally into the proximal area of the tibia and BoneReg-Inject™ or chronOS Inject(®) were injected into the right leg holes. Comparison of resorption and bone formation in vivo was made by X-ray micro-CT and histological evaluation after a live phase of 12 weeks. Long-term effects of BoneReg-Inject™ were studied using a 13-month live period. Significant differences were observed in (1) amount of new bone within implant (p < 0.001), higher in BoneReg-Inject(TM), (2) signs of cartilage tissue (p = 0.003), more pronounced in BoneReg-Inject(TM), and (3) signs of fibrous tissue (p < 0.001), less pronounced in BoneReg-Inject(TM). Mineral content at 13 months postoperative was significantly higher than at 12 weeks (p < 0.001 and p < 0.05, for implant core and rim, respectively). The data demonstrate the potential of deacetylated chitin derivatives to stimulate bone formation.
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spelling pubmed-88369952022-02-12 Mineralization in a Critical Size Bone-Gap in Sheep Tibia Improved by a Chitosan-Calcium Phosphate-Based Composite as Compared to Predicate Device Örlygsson, Gissur Laxdal, Elín H. Kárason, Sigurbergur Dagbjartsson, Atli Gunnarsson, Eggert Ng, Chuen-How Einarsson, Jón M. Gíslason, Jóhannes Jónsson, Halldór Materials (Basel) Article Deacetylated chitin derivatives have been widely studied for tissue engineering purposes. This study aimed to compare the efficacy of an injectable product containing a 50% deacetylated chitin derivative (BoneReg-Inject™) and an existing product (chronOS Inject(®)) serving as a predicate device. A sheep model with a critical size drill hole in the tibial plateau was used. Holes of 8 mm diameter and 30 mm length were drilled bilaterally into the proximal area of the tibia and BoneReg-Inject™ or chronOS Inject(®) were injected into the right leg holes. Comparison of resorption and bone formation in vivo was made by X-ray micro-CT and histological evaluation after a live phase of 12 weeks. Long-term effects of BoneReg-Inject™ were studied using a 13-month live period. Significant differences were observed in (1) amount of new bone within implant (p < 0.001), higher in BoneReg-Inject(TM), (2) signs of cartilage tissue (p = 0.003), more pronounced in BoneReg-Inject(TM), and (3) signs of fibrous tissue (p < 0.001), less pronounced in BoneReg-Inject(TM). Mineral content at 13 months postoperative was significantly higher than at 12 weeks (p < 0.001 and p < 0.05, for implant core and rim, respectively). The data demonstrate the potential of deacetylated chitin derivatives to stimulate bone formation. MDPI 2022-01-22 /pmc/articles/PMC8836995/ /pubmed/35160784 http://dx.doi.org/10.3390/ma15030838 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
Örlygsson, Gissur
Laxdal, Elín H.
Kárason, Sigurbergur
Dagbjartsson, Atli
Gunnarsson, Eggert
Ng, Chuen-How
Einarsson, Jón M.
Gíslason, Jóhannes
Jónsson, Halldór
Mineralization in a Critical Size Bone-Gap in Sheep Tibia Improved by a Chitosan-Calcium Phosphate-Based Composite as Compared to Predicate Device
title Mineralization in a Critical Size Bone-Gap in Sheep Tibia Improved by a Chitosan-Calcium Phosphate-Based Composite as Compared to Predicate Device
title_full Mineralization in a Critical Size Bone-Gap in Sheep Tibia Improved by a Chitosan-Calcium Phosphate-Based Composite as Compared to Predicate Device
title_fullStr Mineralization in a Critical Size Bone-Gap in Sheep Tibia Improved by a Chitosan-Calcium Phosphate-Based Composite as Compared to Predicate Device
title_full_unstemmed Mineralization in a Critical Size Bone-Gap in Sheep Tibia Improved by a Chitosan-Calcium Phosphate-Based Composite as Compared to Predicate Device
title_short Mineralization in a Critical Size Bone-Gap in Sheep Tibia Improved by a Chitosan-Calcium Phosphate-Based Composite as Compared to Predicate Device
title_sort mineralization in a critical size bone-gap in sheep tibia improved by a chitosan-calcium phosphate-based composite as compared to predicate device
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8836995/
https://www.ncbi.nlm.nih.gov/pubmed/35160784
http://dx.doi.org/10.3390/ma15030838
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