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Si, Sr, Ag co-doped hydroxyapatite/TiO(2) coating: enhancement of its antibacterial activity and osteoinductivity

A multifaceted coating with favourable cytocompatibility, osteogenic activity and antibacterial properties would be of great significance and value due to its capability for improving osseointegration and alleviating prosthesis loosening. This study marks the first report on the coating of TiO(2) na...

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Autores principales: Qiao, Haixia, Song, Guiqin, Huang, Yong, Yang, Hao, Han, Shuguang, Zhang, Xuejiao, Wang, Zhenhui, Ma, Jing, Bu, Xiaopei, Fu, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9063874/
https://www.ncbi.nlm.nih.gov/pubmed/35519590
http://dx.doi.org/10.1039/c9ra01168d
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author Qiao, Haixia
Song, Guiqin
Huang, Yong
Yang, Hao
Han, Shuguang
Zhang, Xuejiao
Wang, Zhenhui
Ma, Jing
Bu, Xiaopei
Fu, Li
author_facet Qiao, Haixia
Song, Guiqin
Huang, Yong
Yang, Hao
Han, Shuguang
Zhang, Xuejiao
Wang, Zhenhui
Ma, Jing
Bu, Xiaopei
Fu, Li
author_sort Qiao, Haixia
collection PubMed
description A multifaceted coating with favourable cytocompatibility, osteogenic activity and antibacterial properties would be of great significance and value due to its capability for improving osseointegration and alleviating prosthesis loosening. This study marks the first report on the coating of TiO(2) nanotubular (TNT) arrays with Sr-and-Si-substituted hydroxyapatite (SSHA) endowed with antibacterial characteristics using silver ions. This TNT layer coated with Ag-substituted SSHA (SSAgHA) formed a composite coating with an interconnected microporous structure and a homogeneous distribution of Sr, Si and Ag; such a coating promoted cell adhesion and osteogenic potential. The anchoring effect of the TNT layer improved the adhesion strength of the SSAgHA/TNT coating to 16.9 ± 3.1 MPa, which was higher than the 15 MPa set in the ISO standard 13 779-4:2002. Moreover, the bio-corrosion resistance of the underlying Ti substrate was greatly enhanced by the composite coating. Hydroxyapatite (HA) and SSAgHA coatings provided a suitable environment for the adhesion, spreading and proliferation of mouse osteoblasts. The SSAgHA coating excellently inhibited bacterial activity and enhanced osteoinductivity with higher osteogenic differentiation compared with the HA coating. Sr and Si dopants increased the expression levels of the genes related to osteogenesis and successfully offset the potential cytotoxicity of Ag ions. Super-osteoinductivity was attributed to the rough and superhydrophilic surface of the composite coating. Therefore, the present study demonstrated the potential of the electrodeposited SSAgHA/TNT composite coating as a promising metallic implant with great intrinsic antibacterial activity and osteointegration ability.
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spelling pubmed-90638742022-05-04 Si, Sr, Ag co-doped hydroxyapatite/TiO(2) coating: enhancement of its antibacterial activity and osteoinductivity Qiao, Haixia Song, Guiqin Huang, Yong Yang, Hao Han, Shuguang Zhang, Xuejiao Wang, Zhenhui Ma, Jing Bu, Xiaopei Fu, Li RSC Adv Chemistry A multifaceted coating with favourable cytocompatibility, osteogenic activity and antibacterial properties would be of great significance and value due to its capability for improving osseointegration and alleviating prosthesis loosening. This study marks the first report on the coating of TiO(2) nanotubular (TNT) arrays with Sr-and-Si-substituted hydroxyapatite (SSHA) endowed with antibacterial characteristics using silver ions. This TNT layer coated with Ag-substituted SSHA (SSAgHA) formed a composite coating with an interconnected microporous structure and a homogeneous distribution of Sr, Si and Ag; such a coating promoted cell adhesion and osteogenic potential. The anchoring effect of the TNT layer improved the adhesion strength of the SSAgHA/TNT coating to 16.9 ± 3.1 MPa, which was higher than the 15 MPa set in the ISO standard 13 779-4:2002. Moreover, the bio-corrosion resistance of the underlying Ti substrate was greatly enhanced by the composite coating. Hydroxyapatite (HA) and SSAgHA coatings provided a suitable environment for the adhesion, spreading and proliferation of mouse osteoblasts. The SSAgHA coating excellently inhibited bacterial activity and enhanced osteoinductivity with higher osteogenic differentiation compared with the HA coating. Sr and Si dopants increased the expression levels of the genes related to osteogenesis and successfully offset the potential cytotoxicity of Ag ions. Super-osteoinductivity was attributed to the rough and superhydrophilic surface of the composite coating. Therefore, the present study demonstrated the potential of the electrodeposited SSAgHA/TNT composite coating as a promising metallic implant with great intrinsic antibacterial activity and osteointegration ability. The Royal Society of Chemistry 2019-04-30 /pmc/articles/PMC9063874/ /pubmed/35519590 http://dx.doi.org/10.1039/c9ra01168d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Qiao, Haixia
Song, Guiqin
Huang, Yong
Yang, Hao
Han, Shuguang
Zhang, Xuejiao
Wang, Zhenhui
Ma, Jing
Bu, Xiaopei
Fu, Li
Si, Sr, Ag co-doped hydroxyapatite/TiO(2) coating: enhancement of its antibacterial activity and osteoinductivity
title Si, Sr, Ag co-doped hydroxyapatite/TiO(2) coating: enhancement of its antibacterial activity and osteoinductivity
title_full Si, Sr, Ag co-doped hydroxyapatite/TiO(2) coating: enhancement of its antibacterial activity and osteoinductivity
title_fullStr Si, Sr, Ag co-doped hydroxyapatite/TiO(2) coating: enhancement of its antibacterial activity and osteoinductivity
title_full_unstemmed Si, Sr, Ag co-doped hydroxyapatite/TiO(2) coating: enhancement of its antibacterial activity and osteoinductivity
title_short Si, Sr, Ag co-doped hydroxyapatite/TiO(2) coating: enhancement of its antibacterial activity and osteoinductivity
title_sort si, sr, ag co-doped hydroxyapatite/tio(2) coating: enhancement of its antibacterial activity and osteoinductivity
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9063874/
https://www.ncbi.nlm.nih.gov/pubmed/35519590
http://dx.doi.org/10.1039/c9ra01168d
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