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首页> 外文期刊>International Journal of Pharmaceutics >Microstructural investigation to the controlled release kinetics of monolith osmotic pump tablets via synchrotron radiation X-ray microtomography
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Microstructural investigation to the controlled release kinetics of monolith osmotic pump tablets via synchrotron radiation X-ray microtomography

机译:同步辐射X射线显微断层照相法研究整体渗透泵片控释动力学的微观结构

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摘要

Tomographic imaging techniques are attractive tools for the visualization of the internal structural characteristics of pharmaceutical solid dosage forms. In this paper, the internal structure of the tablet core for a monolith osmotic drug delivery system, felodipine sustained-release tablet, was visualized via synchrotron radiation X-ray computed microtomography during the drug release process. The surface areas and three dimensional parameters of the tablet core were calculated based on the three dimensional reconstruction of the images. At different stages of the drug release process, the surface morphology, the hydration, the swelling, and the structure changing of the tablet, were visualized from the two dimensional monochrome X-ray images. The three dimensional volumes of the remaining tablet core correlated well with the percentages of felodipine (R = 0.9988). Also, the three dimensional surface area almost unchanged during the drug release process, which clearly demonstrated the intrinsic drug release mechanism of the osmotic drug delivery system. In conclusion, the synchrotron radiation X-ray computed microtomography, with rapid acquisition, high intensity and micro-scale spatial resolution, was found to be a useful tool for the quantitative elucidation of the intrinsic drug release kinetics and the three dimensional parameters such as surface areas of the remained core obtained by the synchrotron radiation. Thus, X-ray computed microtomography can be considered as a new and complimentary analytical tool to standard compendial pharmaceutical tests for quality control of osmotic drug delivery systems.
机译:层析成像技术是用于可视化药物固体剂型内部结构特征的有吸引力的工具。在本文中,在药物释放过程中,通过同步辐射X射线计算机断层摄影术观察了整体渗透药物递送系统非洛地平缓释片剂的片剂核心的内部结构。基于图像的三维重建来计算片剂核的表面积和三维参数。在药物释放过程的不同阶段,从二维单色X射线图像中可以看到片剂的表面形态,水化,溶胀和结构变化。其余片剂核心的三维体积与非洛地平的百分比相关性很好(R = 0.9988)。而且,在药物释放过程中三维表面积几乎没有变化,这清楚地证明了渗透药物输送系统的内在药物释放机理。总之,同步辐射X射线计算机断层扫描技术具有快速采集,高强度和微尺度的空间分辨率,被发现是定量阐明内在药物释放动力学和三维参数(例如表面)的有用工具通过同步加速器辐射获得的剩余铁芯的面积。因此,X射线计算机断层摄影术可被视为对标准药物测试进行渗透药物输送系统质量控制的新的补充分析工具。

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