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用于药物递送的溶胶-凝胶诱导有序介孔生物玻璃的原位小角X射线衍射研究

In situ SAXRD study of sol-gel induced well-ordered mesoporous bioglasses for drug delivery.

作者信息

Zhao Y F, Loo S C J, Chen Y Z, Boey F Y C, Ma J

机构信息

School of Materials Science and Engineering, Nanyang Technological University, Nanyang Avenue 50, Singapore 639798.

出版信息

J Biomed Mater Res A. 2008 Jun 15;85(4):1032-42. doi: 10.1002/jbm.a.31545.


DOI:10.1002/jbm.a.31545
PMID:17937413
Abstract

In this work, two systems of mesoporous bioglasses (MBGs) were sol-gel derived using block copolymer pluronic F127 and P123, respectively, as templates. A two-dimensional hexagonal (P6mm) mesoporous structure was obtained for the two systems, with d-spacing in (100) reflection of 8.49 nm for P123-templated MBG (P123-MBG) and 10.26 nm for F127-templated MBG (F127-MBG). The phase transformation behavior for the systems was elucidated using an in situ synchrotron small angle X-ray diffraction approach, with the corresponding mechanisms proposed. It was indicated that both systems go through a complicated phase transformation, from a disordered to a finely ordered hexagonal structure during the self-evaporation process. The surfactants not only acted as templates for the ordered structure, but also enhanced the rigidity of Si-O network, which prevented disruption to the ordered Si-O arrangement by the Ca(2+) and P-O group. In vitro bioactivity study showed similar bioactivity for both the P123-MBG and F127-MBG systems. Drug loading and release studies using a model metoclopramide drug showed that both MBGs presented better loading and release compared to normal bioglass (BG). The significantly higher loading and better sustained release for P123-MBG, compared to F127-MBG, is attributed to its higher pore volume and surface area.

摘要

在本研究中,分别使用嵌段共聚物普朗尼克F127和P123作为模板,通过溶胶-凝胶法制备了两种介孔生物玻璃(MBG)体系。两种体系均获得了二维六方(P6mm)介孔结构,以P123为模板的MBG(P123-MBG)在(100)晶面反射中的d间距为8.49 nm,以F127为模板的MBG(F127-MBG)的d间距为10.26 nm。采用原位同步辐射小角X射线衍射方法阐明了该体系的相变行为,并提出了相应的机理。结果表明,在自蒸发过程中,两种体系均经历了从无序到精细有序的六方结构的复杂相变。表面活性剂不仅作为有序结构的模板,还增强了Si-O网络的刚性,从而防止了Ca(2+)和P-O基团对有序Si-O排列的破坏。体外生物活性研究表明,P123-MBG和F127-MBG体系具有相似的生物活性。使用模型药物甲氧氯普胺进行的药物负载和释放研究表明,与普通生物玻璃(BG)相比,两种MBG均表现出更好的负载和释放性能。与F127-MBG相比,P123-MBG具有显著更高的负载量和更好的缓释性能,这归因于其更高的孔体积和表面积。

相似文献

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In situ SAXRD study of sol-gel induced well-ordered mesoporous bioglasses for drug delivery.

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