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Quantification of Swelling and Erosion in the Controlled Release of a Poorly Water-Soluble Drug Using Synchrotron X-ray Computed Microtomography

机译:使用同步加速器X射线计算机断层扫描技术定量分析水溶性差的药物的控释溶胀和侵蚀

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摘要

The hydration layer plays a key role in the controlled drug release of gel-forming matrix tablets. For poorly water-soluble drugs, matrix erosion is considered as the rate limiting step for drug release. However, few investigations have reported on the quantification of the relative importance of swelling and erosion in the release of poorly soluble drugs, and three-dimensional (3D) structures of the hydration layer are poorly understood. Here, we employed synchrotron radiation X-ray computed microtomography with 9-μm resolution to investigate the hydration dynamics and to quantify the relative importance of swelling and erosion on felodipine release by a statistical model. The 3D structures of the hydration layer were revealed by the reconstructed 3D rendering of tablets. Twenty-three structural parameters related to the volume, the surface area (SA), and the specific surface area (SSA) for the hydration layer and the tablet core were calculated. Three dominating parameters, including SA and SSA of the hydration layer (SAhydration layer and SSAhydration layer) and SA of the glassy core (SAglassy core), were identified to establish the statistical model. The significance order of independent variables was SAhydration layer > SSAhydration layer > SAglassy core, which quantitatively indicated that the release of felodipine was dominated by a combination of erosion and swelling. The 3D reconstruction and structural parameter calculation methods in our study, which are not available from conventional methods, are efficient tools to quantify the relative importance of swelling and erosion in the controlled release of poorly soluble drugs from a structural point of view.
机译:水合层在形成凝胶的基质片剂的受控药物释放中起关键作用。对于水溶性差的药物,基质侵蚀被认为是药物释放的限速步骤。然而,很少有研究报道对难溶性药物释放中溶胀和侵蚀的相对重要性进行量化,并且对水合层的三维(3D)结构了解甚少。在这里,我们采用9微米分辨率的同步辐射X射线计算机断层摄影术,研究水合作用动力学并通过统计模型量化溶胀和侵蚀对非洛地平释放的相对重要性。水合层的3D结构通过重构的平板电脑3D渲染得以揭示。计算了与水合层和片剂芯的体积,表面积(SA)和比表面积(SSA)有关的二十三个结构参数。确定了三个主要参数,包括水化层的SA和SSA(水化层和SSA水化层)和玻璃状核(SAglassy核)的SA,以建立统计模型。自变量的显着性顺序为SA水化层> SSA水化层> SAglassy核心,定量表明非洛地平的释放以侵蚀和溶胀的组合为主导。我们研究中的3D重建和结构参数计算方法是常规方法所无法提供的,是从结构的角度量化难溶性药物控制释放中溶胀和腐蚀的相对重要性的有效工具。

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