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Octacalcium phosphate collagen composite (OCP/Col) enhance bone regeneration in a rat model of skull defect with dural defect

Cranial bone defects are a major issue in the field of neurosurgery, and improper management of such defects can cause cosmetic issues as well as more serious infections and inflammation. Several strategies exist to manage these defects clinically, but most rely on synthetic materials that are prone...

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Autores principales: Sasaki, Takashi, Niizuma, Kuniyasu, Kanoke, Atsushi, Matsui, Keiko, Ogita, Shogo, Rashad, Sherif, Kawai, Tadashi, Watanabe, Mika, Endo, Hidenori, Takahashi, Tetsu, Kamakura, Shinji, Tominaga, Teiji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7011046/
https://www.ncbi.nlm.nih.gov/pubmed/32072051
http://dx.doi.org/10.1016/j.heliyon.2020.e03347
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author Sasaki, Takashi
Niizuma, Kuniyasu
Kanoke, Atsushi
Matsui, Keiko
Ogita, Shogo
Rashad, Sherif
Kawai, Tadashi
Watanabe, Mika
Endo, Hidenori
Takahashi, Tetsu
Kamakura, Shinji
Tominaga, Teiji
author_facet Sasaki, Takashi
Niizuma, Kuniyasu
Kanoke, Atsushi
Matsui, Keiko
Ogita, Shogo
Rashad, Sherif
Kawai, Tadashi
Watanabe, Mika
Endo, Hidenori
Takahashi, Tetsu
Kamakura, Shinji
Tominaga, Teiji
author_sort Sasaki, Takashi
collection PubMed
description Cranial bone defects are a major issue in the field of neurosurgery, and improper management of such defects can cause cosmetic issues as well as more serious infections and inflammation. Several strategies exist to manage these defects clinically, but most rely on synthetic materials that are prone to complications; thus, a bone regenerative approach would be superior. We tested a material (octacalcium phosphate collagen composite [OCP/Col]) that is known to enhance bone regeneration in a skull defect model in rats. Using a critical-sized rat skull defect model, OCP/Col was implanted in rats with an intact dura or with a partial defect of the dura. The results were compared with those in a no-treatment group over the course of 12 weeks using computed tomographic and histological analysis. OCP/Col enhanced bone regeneration, regardless of whether there was a defect of the dura. OCP/Col can be used to treat skull defects, even when the dura is injured or removed surgically, via bone regeneration with enhanced resorption of OCP/Col, thus limiting the risk of infection greatly.
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spelling pubmed-70110462020-02-18 Octacalcium phosphate collagen composite (OCP/Col) enhance bone regeneration in a rat model of skull defect with dural defect Sasaki, Takashi Niizuma, Kuniyasu Kanoke, Atsushi Matsui, Keiko Ogita, Shogo Rashad, Sherif Kawai, Tadashi Watanabe, Mika Endo, Hidenori Takahashi, Tetsu Kamakura, Shinji Tominaga, Teiji Heliyon Article Cranial bone defects are a major issue in the field of neurosurgery, and improper management of such defects can cause cosmetic issues as well as more serious infections and inflammation. Several strategies exist to manage these defects clinically, but most rely on synthetic materials that are prone to complications; thus, a bone regenerative approach would be superior. We tested a material (octacalcium phosphate collagen composite [OCP/Col]) that is known to enhance bone regeneration in a skull defect model in rats. Using a critical-sized rat skull defect model, OCP/Col was implanted in rats with an intact dura or with a partial defect of the dura. The results were compared with those in a no-treatment group over the course of 12 weeks using computed tomographic and histological analysis. OCP/Col enhanced bone regeneration, regardless of whether there was a defect of the dura. OCP/Col can be used to treat skull defects, even when the dura is injured or removed surgically, via bone regeneration with enhanced resorption of OCP/Col, thus limiting the risk of infection greatly. Elsevier 2020-02-06 /pmc/articles/PMC7011046/ /pubmed/32072051 http://dx.doi.org/10.1016/j.heliyon.2020.e03347 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Sasaki, Takashi
Niizuma, Kuniyasu
Kanoke, Atsushi
Matsui, Keiko
Ogita, Shogo
Rashad, Sherif
Kawai, Tadashi
Watanabe, Mika
Endo, Hidenori
Takahashi, Tetsu
Kamakura, Shinji
Tominaga, Teiji
Octacalcium phosphate collagen composite (OCP/Col) enhance bone regeneration in a rat model of skull defect with dural defect
title Octacalcium phosphate collagen composite (OCP/Col) enhance bone regeneration in a rat model of skull defect with dural defect
title_full Octacalcium phosphate collagen composite (OCP/Col) enhance bone regeneration in a rat model of skull defect with dural defect
title_fullStr Octacalcium phosphate collagen composite (OCP/Col) enhance bone regeneration in a rat model of skull defect with dural defect
title_full_unstemmed Octacalcium phosphate collagen composite (OCP/Col) enhance bone regeneration in a rat model of skull defect with dural defect
title_short Octacalcium phosphate collagen composite (OCP/Col) enhance bone regeneration in a rat model of skull defect with dural defect
title_sort octacalcium phosphate collagen composite (ocp/col) enhance bone regeneration in a rat model of skull defect with dural defect
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7011046/
https://www.ncbi.nlm.nih.gov/pubmed/32072051
http://dx.doi.org/10.1016/j.heliyon.2020.e03347
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