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Hydroxyapatite/silver electrospun fibers for anti-infection and osteoinduction

Bone implant materials cause the most common complication of bone infections in orthopedic surgery, resulting in implant failure. Antibiotic treatment of bone infections leads to problems such as bacterial resistance and reduced osteogenic capacity. In this study, dopamine (DA) was self-polymerized...

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Autores principales: Liu, Feifei, Wang, Xiaohui, Chen, Tongtong, Zhang, Naiyin, Wei, Qin, Tian, Juling, Wang, Yingbo, Ma, Chuang, Lu, Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7015467/
https://www.ncbi.nlm.nih.gov/pubmed/32071777
http://dx.doi.org/10.1016/j.jare.2019.10.002
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author Liu, Feifei
Wang, Xiaohui
Chen, Tongtong
Zhang, Naiyin
Wei, Qin
Tian, Juling
Wang, Yingbo
Ma, Chuang
Lu, Yong
author_facet Liu, Feifei
Wang, Xiaohui
Chen, Tongtong
Zhang, Naiyin
Wei, Qin
Tian, Juling
Wang, Yingbo
Ma, Chuang
Lu, Yong
author_sort Liu, Feifei
collection PubMed
description Bone implant materials cause the most common complication of bone infections in orthopedic surgery, resulting in implant failure. Antibiotic treatment of bone infections leads to problems such as bacterial resistance and reduced osteogenic capacity. In this study, dopamine (DA) was self-polymerized on the surface of Polylactic acid (PLLA)/Hydroxyapatite (HA) nanowire composite fibers to form an adhesive polydopamine (PDA) membrane, and a stable silver-nanoparticles (Ag-NPs) coating layer was constructed on it by electrochemically driven Ag(+) coordination and chelation through Polypyrrole (PPy) mediation, achieving steady and slow release of Ag-NPs. With optimized DA soaking time of 24 h and soaking concentration of 0.5 g·L(−1), nanoparticles were uniformly distributed on PLLA/HA/PDA/PPy/Ag composite fibers and the hydrophilicity of the composite fibers was well-behaved. Besides, the composite fibers possessed good physiological stability and 100% antibacterial rate against Escherichia coli (E. coli) as well as Staphylococcus aureus (S. aureus). In addition, the composite fibers had promoted apatite nucleation and growth on surface and good cytocompatibility with osteoblasts, indicating ability of inducing osteogenic differentiation. In summary, a multi-functional PLLA/HA/PDA/PPy/Ag composite fiber with long-term antibacterial property, bioactivity and osteoinductivity was successfully constructed by electrospinning and electrochemical deposition.
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spelling pubmed-70154672020-02-18 Hydroxyapatite/silver electrospun fibers for anti-infection and osteoinduction Liu, Feifei Wang, Xiaohui Chen, Tongtong Zhang, Naiyin Wei, Qin Tian, Juling Wang, Yingbo Ma, Chuang Lu, Yong J Adv Res Original Article Bone implant materials cause the most common complication of bone infections in orthopedic surgery, resulting in implant failure. Antibiotic treatment of bone infections leads to problems such as bacterial resistance and reduced osteogenic capacity. In this study, dopamine (DA) was self-polymerized on the surface of Polylactic acid (PLLA)/Hydroxyapatite (HA) nanowire composite fibers to form an adhesive polydopamine (PDA) membrane, and a stable silver-nanoparticles (Ag-NPs) coating layer was constructed on it by electrochemically driven Ag(+) coordination and chelation through Polypyrrole (PPy) mediation, achieving steady and slow release of Ag-NPs. With optimized DA soaking time of 24 h and soaking concentration of 0.5 g·L(−1), nanoparticles were uniformly distributed on PLLA/HA/PDA/PPy/Ag composite fibers and the hydrophilicity of the composite fibers was well-behaved. Besides, the composite fibers possessed good physiological stability and 100% antibacterial rate against Escherichia coli (E. coli) as well as Staphylococcus aureus (S. aureus). In addition, the composite fibers had promoted apatite nucleation and growth on surface and good cytocompatibility with osteoblasts, indicating ability of inducing osteogenic differentiation. In summary, a multi-functional PLLA/HA/PDA/PPy/Ag composite fiber with long-term antibacterial property, bioactivity and osteoinductivity was successfully constructed by electrospinning and electrochemical deposition. Elsevier 2019-10-09 /pmc/articles/PMC7015467/ /pubmed/32071777 http://dx.doi.org/10.1016/j.jare.2019.10.002 Text en © 2019 The Authors. Published by Elsevier B.V. on behalf of Cairo University. https://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 Original Article
Liu, Feifei
Wang, Xiaohui
Chen, Tongtong
Zhang, Naiyin
Wei, Qin
Tian, Juling
Wang, Yingbo
Ma, Chuang
Lu, Yong
Hydroxyapatite/silver electrospun fibers for anti-infection and osteoinduction
title Hydroxyapatite/silver electrospun fibers for anti-infection and osteoinduction
title_full Hydroxyapatite/silver electrospun fibers for anti-infection and osteoinduction
title_fullStr Hydroxyapatite/silver electrospun fibers for anti-infection and osteoinduction
title_full_unstemmed Hydroxyapatite/silver electrospun fibers for anti-infection and osteoinduction
title_short Hydroxyapatite/silver electrospun fibers for anti-infection and osteoinduction
title_sort hydroxyapatite/silver electrospun fibers for anti-infection and osteoinduction
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7015467/
https://www.ncbi.nlm.nih.gov/pubmed/32071777
http://dx.doi.org/10.1016/j.jare.2019.10.002
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