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Phosphoserine enhanced Cu-doped bioactive glass dynamic dual-network hydrogel for craniofacial bone defect repair

Flexible hydrogels containing various osteogenic inorganic constituents, which can accommodate complicated shape variations, are considered as ideal grafts for craniofacial bone defect reconstruction. However, in most hybrid hydrogels, poor interaction between the polymer network and particles has d...

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Autores principales: Liu, Yuwei, Wang, Gang, Luo, Huitong, Zhao, Bangjiao, Liao, Muheng, Dai, Qiyuan, Li, Maocai, Li, Qingtao, Cao, Xiaodong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10243839/
https://www.ncbi.nlm.nih.gov/pubmed/37287897
http://dx.doi.org/10.1093/rb/rbad054
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author Liu, Yuwei
Wang, Gang
Luo, Huitong
Zhao, Bangjiao
Liao, Muheng
Dai, Qiyuan
Li, Maocai
Li, Qingtao
Cao, Xiaodong
author_facet Liu, Yuwei
Wang, Gang
Luo, Huitong
Zhao, Bangjiao
Liao, Muheng
Dai, Qiyuan
Li, Maocai
Li, Qingtao
Cao, Xiaodong
author_sort Liu, Yuwei
collection PubMed
description Flexible hydrogels containing various osteogenic inorganic constituents, which can accommodate complicated shape variations, are considered as ideal grafts for craniofacial bone defect reconstruction. However, in most hybrid hydrogels, poor interaction between the polymer network and particles has detrimental effects on hydrogel rheological and structural properties, clinical manipulation and repair efficacy. In this article, we designed and prepared a series of hyaluronic acid composite hydrogel containing Cu-doped bioactive glass (CuBG) and phosphoserine (PS), in which hyaluronic acid was modified by methacrylate groups and phenylboronic acid groups to form a double crosslinked network. PS acted as an interaction bridge of CuBG particles and HAMA-PBA network to improve the mechanical properties of the composite hydrogels. The CuBG/PS hydrogels exhibited suitable rheological properties (injectable, self-healing, shape-adaptable), bone tissue integrating ability and anti-bacterial property. Meanwhile, we found that CuBG and PS have synergistic effect on improving osteogenic efficiency both in vitro and in vivo, particularly when the ratio of CuBG to PS is lower than 3 (9CB/3PS). This work provided a versatile and scalable approach to enhanced the interaction within inorganic particles and polymer network in hydrogels without extra modification on components.
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spelling pubmed-102438392023-06-07 Phosphoserine enhanced Cu-doped bioactive glass dynamic dual-network hydrogel for craniofacial bone defect repair Liu, Yuwei Wang, Gang Luo, Huitong Zhao, Bangjiao Liao, Muheng Dai, Qiyuan Li, Maocai Li, Qingtao Cao, Xiaodong Regen Biomater Research Article Flexible hydrogels containing various osteogenic inorganic constituents, which can accommodate complicated shape variations, are considered as ideal grafts for craniofacial bone defect reconstruction. However, in most hybrid hydrogels, poor interaction between the polymer network and particles has detrimental effects on hydrogel rheological and structural properties, clinical manipulation and repair efficacy. In this article, we designed and prepared a series of hyaluronic acid composite hydrogel containing Cu-doped bioactive glass (CuBG) and phosphoserine (PS), in which hyaluronic acid was modified by methacrylate groups and phenylboronic acid groups to form a double crosslinked network. PS acted as an interaction bridge of CuBG particles and HAMA-PBA network to improve the mechanical properties of the composite hydrogels. The CuBG/PS hydrogels exhibited suitable rheological properties (injectable, self-healing, shape-adaptable), bone tissue integrating ability and anti-bacterial property. Meanwhile, we found that CuBG and PS have synergistic effect on improving osteogenic efficiency both in vitro and in vivo, particularly when the ratio of CuBG to PS is lower than 3 (9CB/3PS). This work provided a versatile and scalable approach to enhanced the interaction within inorganic particles and polymer network in hydrogels without extra modification on components. Oxford University Press 2023-05-17 /pmc/articles/PMC10243839/ /pubmed/37287897 http://dx.doi.org/10.1093/rb/rbad054 Text en © The Author(s) 2023. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Liu, Yuwei
Wang, Gang
Luo, Huitong
Zhao, Bangjiao
Liao, Muheng
Dai, Qiyuan
Li, Maocai
Li, Qingtao
Cao, Xiaodong
Phosphoserine enhanced Cu-doped bioactive glass dynamic dual-network hydrogel for craniofacial bone defect repair
title Phosphoserine enhanced Cu-doped bioactive glass dynamic dual-network hydrogel for craniofacial bone defect repair
title_full Phosphoserine enhanced Cu-doped bioactive glass dynamic dual-network hydrogel for craniofacial bone defect repair
title_fullStr Phosphoserine enhanced Cu-doped bioactive glass dynamic dual-network hydrogel for craniofacial bone defect repair
title_full_unstemmed Phosphoserine enhanced Cu-doped bioactive glass dynamic dual-network hydrogel for craniofacial bone defect repair
title_short Phosphoserine enhanced Cu-doped bioactive glass dynamic dual-network hydrogel for craniofacial bone defect repair
title_sort phosphoserine enhanced cu-doped bioactive glass dynamic dual-network hydrogel for craniofacial bone defect repair
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10243839/
https://www.ncbi.nlm.nih.gov/pubmed/37287897
http://dx.doi.org/10.1093/rb/rbad054
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