Controlled and sustained drug release performance of calcium sulfate cement porous TiO2 microsphere composites

Wei Luo, Zhen Geng, Zhaoyang Li, Shuilin Wu, Zhenduo Cui, Shengli Zhu, Yanqin Liang, Xianjin Yang Tianjin Key Laboratory of Composite and Functional Materials, School of Materials Science and Engineering, Tianjin University, Tianjin, China Background: Calcium sulphate cement (CSC) is widely used a...

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Autores principales: Luo W, Geng Z, Li Z, Wu S, Cui Z, Zhu S, Liang Y, Yang X
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Lenguaje:EN
Publicado: Dove Medical Press 2018
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spelling oai:doaj.org-article:6c32fbcc16a549a68efbaee1f85764d52021-12-02T06:20:18ZControlled and sustained drug release performance of calcium sulfate cement porous TiO2 microsphere composites1178-2013https://doaj.org/article/6c32fbcc16a549a68efbaee1f85764d52018-11-01T00:00:00Zhttps://www.dovepress.com/controlled-and-sustained-drug-release-performance-of-calcium-sulfate-c-peer-reviewed-article-IJNhttps://doaj.org/toc/1178-2013Wei Luo, Zhen Geng, Zhaoyang Li, Shuilin Wu, Zhenduo Cui, Shengli Zhu, Yanqin Liang, Xianjin Yang Tianjin Key Laboratory of Composite and Functional Materials, School of Materials Science and Engineering, Tianjin University, Tianjin, China Background: Calcium sulphate cement (CSC) is widely used as an osteoconductive biomaterial in bone repair and regeneration. Purpose: In this study, porous TiO2 microspheres were added to CSC to achieve a controlled and sustained drug (gentamicin) release. Methods: Scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray powder diffraction (XRD), and Brunauer-Emmett-Teller (BET) surface area analysis were conducted to analyse the morphology, phase composition, and surface area of the TiO2 microspheres and composite cements. In addition, the injection time, compressive strength, degradation behaviour, and antibacterial ability of the composite cements were examined during in vitro degradation. Gentamicin release profile was recorded using an ultraviolet spectrophotometer. Results: The results revealed the excellent drug loading ability of the TiO2 microspheres. The addition of TiO2 microspheres improved the injectability and compressive strength of the composite cements, the maximum value of which was achieved at a TiO2 loading of 5 wt.%. When immersed in simulated body fluid (SBF), the composite cements doped with TiO2 microspheres were observed to release gentamicin in a stable and sustained manner, especially in the latter stages of in vitro degradation. During degradation, CSC doped with TiO2 microspheres exhibited a typical apatite-like behaviour. Further, antibacterial analysis showed that CSC doped with TiO2 microspheres exhibited long-term antibiotic activity. Conclusion: Thus, as an effective sustained-release formulation material, TiO2 microspheres show a great potential for application in bone cements. Keywords: TiO2, microsphere, calcium sulfate cement, sustained drug release, antibacterial abilityLuo WGeng ZLi ZWu SCui ZZhu SLiang YYang XDove Medical PressarticleTiO2 microsphere;calcium sulphate cement;sustained drug release;antibacterial abilityMedicine (General)R5-920ENInternational Journal of Nanomedicine, Vol Volume 13, Pp 7491-7501 (2018)
institution DOAJ
collection DOAJ
language EN
topic TiO2 microsphere;calcium sulphate cement;sustained drug release;antibacterial ability
Medicine (General)
R5-920
spellingShingle TiO2 microsphere;calcium sulphate cement;sustained drug release;antibacterial ability
Medicine (General)
R5-920
Luo W
Geng Z
Li Z
Wu S
Cui Z
Zhu S
Liang Y
Yang X
Controlled and sustained drug release performance of calcium sulfate cement porous TiO2 microsphere composites
description Wei Luo, Zhen Geng, Zhaoyang Li, Shuilin Wu, Zhenduo Cui, Shengli Zhu, Yanqin Liang, Xianjin Yang Tianjin Key Laboratory of Composite and Functional Materials, School of Materials Science and Engineering, Tianjin University, Tianjin, China Background: Calcium sulphate cement (CSC) is widely used as an osteoconductive biomaterial in bone repair and regeneration. Purpose: In this study, porous TiO2 microspheres were added to CSC to achieve a controlled and sustained drug (gentamicin) release. Methods: Scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray powder diffraction (XRD), and Brunauer-Emmett-Teller (BET) surface area analysis were conducted to analyse the morphology, phase composition, and surface area of the TiO2 microspheres and composite cements. In addition, the injection time, compressive strength, degradation behaviour, and antibacterial ability of the composite cements were examined during in vitro degradation. Gentamicin release profile was recorded using an ultraviolet spectrophotometer. Results: The results revealed the excellent drug loading ability of the TiO2 microspheres. The addition of TiO2 microspheres improved the injectability and compressive strength of the composite cements, the maximum value of which was achieved at a TiO2 loading of 5 wt.%. When immersed in simulated body fluid (SBF), the composite cements doped with TiO2 microspheres were observed to release gentamicin in a stable and sustained manner, especially in the latter stages of in vitro degradation. During degradation, CSC doped with TiO2 microspheres exhibited a typical apatite-like behaviour. Further, antibacterial analysis showed that CSC doped with TiO2 microspheres exhibited long-term antibiotic activity. Conclusion: Thus, as an effective sustained-release formulation material, TiO2 microspheres show a great potential for application in bone cements. Keywords: TiO2, microsphere, calcium sulfate cement, sustained drug release, antibacterial ability
format article
author Luo W
Geng Z
Li Z
Wu S
Cui Z
Zhu S
Liang Y
Yang X
author_facet Luo W
Geng Z
Li Z
Wu S
Cui Z
Zhu S
Liang Y
Yang X
author_sort Luo W
title Controlled and sustained drug release performance of calcium sulfate cement porous TiO2 microsphere composites
title_short Controlled and sustained drug release performance of calcium sulfate cement porous TiO2 microsphere composites
title_full Controlled and sustained drug release performance of calcium sulfate cement porous TiO2 microsphere composites
title_fullStr Controlled and sustained drug release performance of calcium sulfate cement porous TiO2 microsphere composites
title_full_unstemmed Controlled and sustained drug release performance of calcium sulfate cement porous TiO2 microsphere composites
title_sort controlled and sustained drug release performance of calcium sulfate cement porous tio2 microsphere composites
publisher Dove Medical Press
publishDate 2018
url https://doaj.org/article/6c32fbcc16a549a68efbaee1f85764d5
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