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A Magnesium-Incorporated Nanoporous Titanium Coating for Rapid Osseointegration

PURPOSE: Micro-arc oxidation (MAO) is a fast and effective method to prepare nanoporous coatings with high biological activity and bonding strength. Simple micro/nano-coatings cannot fully meet the requirements of osteogenesis. To further improve the biological activity of a titanium surface, we suc...

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Autores principales: Li, Xiaodong, Wang, Mingyi, Zhang, Wenjie, Bai, Yuting, Liu, Yuan, Meng, Jian, Zhang, Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7490434/
https://www.ncbi.nlm.nih.gov/pubmed/32982220
http://dx.doi.org/10.2147/IJN.S255486
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author Li, Xiaodong
Wang, Mingyi
Zhang, Wenjie
Bai, Yuting
Liu, Yuan
Meng, Jian
Zhang, Ling
author_facet Li, Xiaodong
Wang, Mingyi
Zhang, Wenjie
Bai, Yuting
Liu, Yuan
Meng, Jian
Zhang, Ling
author_sort Li, Xiaodong
collection PubMed
description PURPOSE: Micro-arc oxidation (MAO) is a fast and effective method to prepare nanoporous coatings with high biological activity and bonding strength. Simple micro/nano-coatings cannot fully meet the requirements of osteogenesis. To further improve the biological activity of a titanium surface, we successfully added biological magnesium (Mg(2+)) to a coating by micro-arc oxidation and evaluated the optimal magnesium concentration in the electrolyte, biocompatibility, cell adhesion, proliferation, and osteogenesis in vitro. METHODS: Nanoporous titanium coatings with different concentrations of magnesium were prepared by micro-arc oxidation and characterized by scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS). The Mg(2+) release ability of the magnesium-incorporated nanoporous titanium coatings was determined by inductively coupled plasma emission spectrometry (ICP-OES). The cytotoxicity of the magnesium-incorporated nanoporous titanium coatings was detected with live/dead double-staining tests. A CCK-8 assay was employed to evaluate cell proliferation, and FITC-phalloidin was used to determine the structure of the cytoskeleton by staining β-actin. Alkaline phosphatase (ALP) activity was evaluated by alizarin red S (ARS) staining to determine the effect of the coatings on osteogenic differentiation in vitro. The mRNA expression of osteogenic differentiation-related markers was measured using qRT-PCR. RESULTS: EDS analyses revealed the successful addition of magnesium to the microporous coatings. The best magnesium concentration of the electrolyte for preparing the new coating was determined. The results showed that the nano-coatings prepared using the electrolyte with 2 g/L magnesium acetate best promoted the adhesion, proliferation, and osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs). CONCLUSION: These results suggest that the new titanium metal coating with a dual effect of promoting bone morphology and supplying the biological ion Mg(2+) can be beneficial for rapid osseointegration.
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spelling pubmed-74904342020-09-24 A Magnesium-Incorporated Nanoporous Titanium Coating for Rapid Osseointegration Li, Xiaodong Wang, Mingyi Zhang, Wenjie Bai, Yuting Liu, Yuan Meng, Jian Zhang, Ling Int J Nanomedicine Original Research PURPOSE: Micro-arc oxidation (MAO) is a fast and effective method to prepare nanoporous coatings with high biological activity and bonding strength. Simple micro/nano-coatings cannot fully meet the requirements of osteogenesis. To further improve the biological activity of a titanium surface, we successfully added biological magnesium (Mg(2+)) to a coating by micro-arc oxidation and evaluated the optimal magnesium concentration in the electrolyte, biocompatibility, cell adhesion, proliferation, and osteogenesis in vitro. METHODS: Nanoporous titanium coatings with different concentrations of magnesium were prepared by micro-arc oxidation and characterized by scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS). The Mg(2+) release ability of the magnesium-incorporated nanoporous titanium coatings was determined by inductively coupled plasma emission spectrometry (ICP-OES). The cytotoxicity of the magnesium-incorporated nanoporous titanium coatings was detected with live/dead double-staining tests. A CCK-8 assay was employed to evaluate cell proliferation, and FITC-phalloidin was used to determine the structure of the cytoskeleton by staining β-actin. Alkaline phosphatase (ALP) activity was evaluated by alizarin red S (ARS) staining to determine the effect of the coatings on osteogenic differentiation in vitro. The mRNA expression of osteogenic differentiation-related markers was measured using qRT-PCR. RESULTS: EDS analyses revealed the successful addition of magnesium to the microporous coatings. The best magnesium concentration of the electrolyte for preparing the new coating was determined. The results showed that the nano-coatings prepared using the electrolyte with 2 g/L magnesium acetate best promoted the adhesion, proliferation, and osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs). CONCLUSION: These results suggest that the new titanium metal coating with a dual effect of promoting bone morphology and supplying the biological ion Mg(2+) can be beneficial for rapid osseointegration. Dove 2020-09-08 /pmc/articles/PMC7490434/ /pubmed/32982220 http://dx.doi.org/10.2147/IJN.S255486 Text en © 2020 Li et al. http://creativecommons.org/licenses/by-nc/3.0/ This work is published and licensed by Dove Medical Press Limited. The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed. For permission for commercial use of this work, please see paragraphs 4.2 and 5 of our Terms (https://www.dovepress.com/terms.php).
spellingShingle Original Research
Li, Xiaodong
Wang, Mingyi
Zhang, Wenjie
Bai, Yuting
Liu, Yuan
Meng, Jian
Zhang, Ling
A Magnesium-Incorporated Nanoporous Titanium Coating for Rapid Osseointegration
title A Magnesium-Incorporated Nanoporous Titanium Coating for Rapid Osseointegration
title_full A Magnesium-Incorporated Nanoporous Titanium Coating for Rapid Osseointegration
title_fullStr A Magnesium-Incorporated Nanoporous Titanium Coating for Rapid Osseointegration
title_full_unstemmed A Magnesium-Incorporated Nanoporous Titanium Coating for Rapid Osseointegration
title_short A Magnesium-Incorporated Nanoporous Titanium Coating for Rapid Osseointegration
title_sort magnesium-incorporated nanoporous titanium coating for rapid osseointegration
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7490434/
https://www.ncbi.nlm.nih.gov/pubmed/32982220
http://dx.doi.org/10.2147/IJN.S255486
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