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A Novel Injectable Calcium Phosphate Cement-Bioactive Glass Composite for Bone Regeneration

BACKGROUND: Calcium phosphate cement (CPC) can be molded or injected to form a scaffold in situ, which intimately conforms to complex bone defects. Bioactive glass (BG) is known for its unique ability to bond to living bone and promote bone growth. However, it was not until recently that literature...

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Autores principales: Yu, Long, Li, Yang, Zhao, Kang, Tang, Yufei, Cheng, Zhe, Chen, Jun, Zang, Yuan, Wu, Jianwei, Kong, Liang, Liu, Shuai, Lei, Wei, Wu, Zixiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3636220/
https://www.ncbi.nlm.nih.gov/pubmed/23638115
http://dx.doi.org/10.1371/journal.pone.0062570
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author Yu, Long
Li, Yang
Zhao, Kang
Tang, Yufei
Cheng, Zhe
Chen, Jun
Zang, Yuan
Wu, Jianwei
Kong, Liang
Liu, Shuai
Lei, Wei
Wu, Zixiang
author_facet Yu, Long
Li, Yang
Zhao, Kang
Tang, Yufei
Cheng, Zhe
Chen, Jun
Zang, Yuan
Wu, Jianwei
Kong, Liang
Liu, Shuai
Lei, Wei
Wu, Zixiang
author_sort Yu, Long
collection PubMed
description BACKGROUND: Calcium phosphate cement (CPC) can be molded or injected to form a scaffold in situ, which intimately conforms to complex bone defects. Bioactive glass (BG) is known for its unique ability to bond to living bone and promote bone growth. However, it was not until recently that literature was available regarding CPC-BG applied as an injectable graft. In this paper, we reported a novel injectable CPC-BG composite with improved properties caused by the incorporation of BG into CPC. MATERIALS AND METHODS: The novel injectable bioactive cement was evaluated to determine its composition, microstructure, setting time, injectability, compressive strength and behavior in a simulated body fluid (SBF). The in vitro cellular responses of osteoblasts and in vivo tissue responses after the implantation of CPC-BG in femoral condyle defects of rabbits were also investigated. RESULTS: CPC-BG possessed a retarded setting time and markedly better injectability and mechanical properties than CPC. Moreover, a new Ca-deficient apatite layer was deposited on the composite surface after immersing immersion in SBF for 7 days. CPC-BG samples showed significantly improved degradability and bioactivity compared to CPC in simulated body fluid (SBF). In addition, the degrees of cell attachment, proliferation and differentiation on CPC-BG were higher than those on CPC. Macroscopic evaluation, histological evaluation, and micro-computed tomography (micro-CT) analysis showed that CPC-BG enhanced the efficiency of new bone formation in comparison with CPC. CONCLUSIONS: A novel CPC-BG composite has been synthesized with improved properties exhibiting promising prospects for bone regeneration.
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spelling pubmed-36362202013-05-01 A Novel Injectable Calcium Phosphate Cement-Bioactive Glass Composite for Bone Regeneration Yu, Long Li, Yang Zhao, Kang Tang, Yufei Cheng, Zhe Chen, Jun Zang, Yuan Wu, Jianwei Kong, Liang Liu, Shuai Lei, Wei Wu, Zixiang PLoS One Research Article BACKGROUND: Calcium phosphate cement (CPC) can be molded or injected to form a scaffold in situ, which intimately conforms to complex bone defects. Bioactive glass (BG) is known for its unique ability to bond to living bone and promote bone growth. However, it was not until recently that literature was available regarding CPC-BG applied as an injectable graft. In this paper, we reported a novel injectable CPC-BG composite with improved properties caused by the incorporation of BG into CPC. MATERIALS AND METHODS: The novel injectable bioactive cement was evaluated to determine its composition, microstructure, setting time, injectability, compressive strength and behavior in a simulated body fluid (SBF). The in vitro cellular responses of osteoblasts and in vivo tissue responses after the implantation of CPC-BG in femoral condyle defects of rabbits were also investigated. RESULTS: CPC-BG possessed a retarded setting time and markedly better injectability and mechanical properties than CPC. Moreover, a new Ca-deficient apatite layer was deposited on the composite surface after immersing immersion in SBF for 7 days. CPC-BG samples showed significantly improved degradability and bioactivity compared to CPC in simulated body fluid (SBF). In addition, the degrees of cell attachment, proliferation and differentiation on CPC-BG were higher than those on CPC. Macroscopic evaluation, histological evaluation, and micro-computed tomography (micro-CT) analysis showed that CPC-BG enhanced the efficiency of new bone formation in comparison with CPC. CONCLUSIONS: A novel CPC-BG composite has been synthesized with improved properties exhibiting promising prospects for bone regeneration. Public Library of Science 2013-04-25 /pmc/articles/PMC3636220/ /pubmed/23638115 http://dx.doi.org/10.1371/journal.pone.0062570 Text en © 2013 Yu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yu, Long
Li, Yang
Zhao, Kang
Tang, Yufei
Cheng, Zhe
Chen, Jun
Zang, Yuan
Wu, Jianwei
Kong, Liang
Liu, Shuai
Lei, Wei
Wu, Zixiang
A Novel Injectable Calcium Phosphate Cement-Bioactive Glass Composite for Bone Regeneration
title A Novel Injectable Calcium Phosphate Cement-Bioactive Glass Composite for Bone Regeneration
title_full A Novel Injectable Calcium Phosphate Cement-Bioactive Glass Composite for Bone Regeneration
title_fullStr A Novel Injectable Calcium Phosphate Cement-Bioactive Glass Composite for Bone Regeneration
title_full_unstemmed A Novel Injectable Calcium Phosphate Cement-Bioactive Glass Composite for Bone Regeneration
title_short A Novel Injectable Calcium Phosphate Cement-Bioactive Glass Composite for Bone Regeneration
title_sort novel injectable calcium phosphate cement-bioactive glass composite for bone regeneration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3636220/
https://www.ncbi.nlm.nih.gov/pubmed/23638115
http://dx.doi.org/10.1371/journal.pone.0062570
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