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A Composite Hydrogel with High Mechanical Strength, Fluorescence, and Degradable Behavior for Bone Tissue Engineering

In this work, to obtain a novel composite hydrogel with high mechanical strength, fluorescence and degradable behavior for bone tissue engineering, we prepare a nanofiller and double-network (DN) structure co-enhanced carbon dots/hydroxyapatite/poly (vinyl alcohol) (CDs/HA/PVA) DN hydrogel. The comp...

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Detalles Bibliográficos
Autores principales: Wang, Yanqin, Xue, Yanan, Wang, Jinghui, Zhu, Yaping, Zhu, Yu, Zhang, Xuehui, Liao, Jingwen, Li, Xiaona, Wu, Xiaogang, Qin, Yi-Xian, Chen, Weiyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680580/
https://www.ncbi.nlm.nih.gov/pubmed/31266178
http://dx.doi.org/10.3390/polym11071112
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author Wang, Yanqin
Xue, Yanan
Wang, Jinghui
Zhu, Yaping
Zhu, Yu
Zhang, Xuehui
Liao, Jingwen
Li, Xiaona
Wu, Xiaogang
Qin, Yi-Xian
Chen, Weiyi
author_facet Wang, Yanqin
Xue, Yanan
Wang, Jinghui
Zhu, Yaping
Zhu, Yu
Zhang, Xuehui
Liao, Jingwen
Li, Xiaona
Wu, Xiaogang
Qin, Yi-Xian
Chen, Weiyi
author_sort Wang, Yanqin
collection PubMed
description In this work, to obtain a novel composite hydrogel with high mechanical strength, fluorescence and degradable behavior for bone tissue engineering, we prepare a nanofiller and double-network (DN) structure co-enhanced carbon dots/hydroxyapatite/poly (vinyl alcohol) (CDs/HA/PVA) DN hydrogel. The composite hydrogels are fabricated by a combination of two fabrication techniques including chemical copolymerization and freezing‒thawing cycles, and further characterized by FTIR, XRD, etc. Additional investigations focus on the mechanical properties of the hydrogel with varying mass ratios of CDs to PVA, HA to PVA and different numbers of freezing/thawing cycles. The results show that the as-prepared CDs(3.0)/HA(0.6)/PVA DN(9) hydrogel has optimized compression properties (Compression strength = 3.462 MPa, Young’s modulus = 4.5 kPa). This is mainly caused by the synergism effect of the nanofiller and chemical and physical co-crosslinking. The water content and swelling ratio of the CDs/HA/PVA SN and DN gels are also systematically investigated to reveal the relationship of their microstructural features and mechanical behavior. In addition, in vitro degradation tests of the CDs/HA/PVA DN hydrogel show that the DN hydrogels have a prominent degradable behavior. So, they have potential to be used as high-strength, self-tracing bone substitutes in the biomedical engineering field.
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spelling pubmed-66805802019-08-09 A Composite Hydrogel with High Mechanical Strength, Fluorescence, and Degradable Behavior for Bone Tissue Engineering Wang, Yanqin Xue, Yanan Wang, Jinghui Zhu, Yaping Zhu, Yu Zhang, Xuehui Liao, Jingwen Li, Xiaona Wu, Xiaogang Qin, Yi-Xian Chen, Weiyi Polymers (Basel) Article In this work, to obtain a novel composite hydrogel with high mechanical strength, fluorescence and degradable behavior for bone tissue engineering, we prepare a nanofiller and double-network (DN) structure co-enhanced carbon dots/hydroxyapatite/poly (vinyl alcohol) (CDs/HA/PVA) DN hydrogel. The composite hydrogels are fabricated by a combination of two fabrication techniques including chemical copolymerization and freezing‒thawing cycles, and further characterized by FTIR, XRD, etc. Additional investigations focus on the mechanical properties of the hydrogel with varying mass ratios of CDs to PVA, HA to PVA and different numbers of freezing/thawing cycles. The results show that the as-prepared CDs(3.0)/HA(0.6)/PVA DN(9) hydrogel has optimized compression properties (Compression strength = 3.462 MPa, Young’s modulus = 4.5 kPa). This is mainly caused by the synergism effect of the nanofiller and chemical and physical co-crosslinking. The water content and swelling ratio of the CDs/HA/PVA SN and DN gels are also systematically investigated to reveal the relationship of their microstructural features and mechanical behavior. In addition, in vitro degradation tests of the CDs/HA/PVA DN hydrogel show that the DN hydrogels have a prominent degradable behavior. So, they have potential to be used as high-strength, self-tracing bone substitutes in the biomedical engineering field. MDPI 2019-07-01 /pmc/articles/PMC6680580/ /pubmed/31266178 http://dx.doi.org/10.3390/polym11071112 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Yanqin
Xue, Yanan
Wang, Jinghui
Zhu, Yaping
Zhu, Yu
Zhang, Xuehui
Liao, Jingwen
Li, Xiaona
Wu, Xiaogang
Qin, Yi-Xian
Chen, Weiyi
A Composite Hydrogel with High Mechanical Strength, Fluorescence, and Degradable Behavior for Bone Tissue Engineering
title A Composite Hydrogel with High Mechanical Strength, Fluorescence, and Degradable Behavior for Bone Tissue Engineering
title_full A Composite Hydrogel with High Mechanical Strength, Fluorescence, and Degradable Behavior for Bone Tissue Engineering
title_fullStr A Composite Hydrogel with High Mechanical Strength, Fluorescence, and Degradable Behavior for Bone Tissue Engineering
title_full_unstemmed A Composite Hydrogel with High Mechanical Strength, Fluorescence, and Degradable Behavior for Bone Tissue Engineering
title_short A Composite Hydrogel with High Mechanical Strength, Fluorescence, and Degradable Behavior for Bone Tissue Engineering
title_sort composite hydrogel with high mechanical strength, fluorescence, and degradable behavior for bone tissue engineering
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680580/
https://www.ncbi.nlm.nih.gov/pubmed/31266178
http://dx.doi.org/10.3390/polym11071112
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