首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Tapioca starch graft copolymers and Dome Matrix modules assembling technology. I. Effect of module shape on drug release.
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Tapioca starch graft copolymers and Dome Matrix modules assembling technology. I. Effect of module shape on drug release.

机译:木薯淀粉接枝共聚物和Dome Matrix模块组装技术。 I.模块形状对药物释放的影响。

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This paper studies the Riboflavin release from compressed disc modules of Dome Matrix(R) technology using tapioca starch-ethylmethacrylate (TSEMA) and tapioca hydroxypropylstarch-ethylmethacrylate (THSEMA), graft copolymers produced by two different drying methods. The comparison with the release behaviour of similar HPMC modules was performed. Two different shape modules have been made, identified as female and male modules, in order to obtain their assemblage by interlocking the disc bases. HPMC matrices showed quasi-linear Riboflavin release in case of both female and male modules, with faster drug release than TSEMA modules. In the case of THSEMA modules, a faster release was observed compared to HPMC modules. Furthermore, matrices obtained with TSEMA copolymers remained nearly intact after dissolution process, while matrices containing HPMC experimented a complete dissolution of the modules. Combining these results with the release curve analysis using the Korsmeyer and Peppas exponential equation, HPMC modules controlled the drug release by polymer relaxation or erosion. For TSEMA and THSEMA, the drug release mechanism was controlled mainly by drug diffusion. The pronounced faster releases for the matrices containing THSEMA copolymers compared with the ones with TSEMA were due to a more important erosive support; however, the main structure of the matrix remains coherent. Porosity and tortuosity values and the shape of the modules explained the drug release observed.
机译:本文研究了使用木薯淀粉-甲基丙烯酸乙酯(TSEMA)和木薯羟丙基淀粉-甲基丙烯酸乙酯(THSEMA)两种方法干燥得到的接枝共聚物,从DomeMatrix®技术的压缩圆盘组件中释放出核黄素。与类似的HPMC模块的释放行为进行了比较。制作了两个不同形状的模块,分别称为母模和公模,以便通过互锁圆盘基座获得它们的组装。 HPMC基质在雌性和雄性模块中均表现出准线性的核黄素释放,其药物释放速度比TSEMA组件快。在THSEMA模块的情况下,与HPMC模块相比,释放速度更快。此外,在溶解过程之后,使用TSEMA共聚物获得的基质几乎保持完整,而包含HPMC的基质则对模块进行了完全溶解。将这些结果与使用Korsmeyer和Peppas指数方程式的释放曲线分析相结合,HPMC模块通过聚合物松弛或腐蚀来控制药物释放。对于TSEMA和THSEMA,药物释放机制主要受药物扩散控制。含THSEMA共聚物的基质比含TSEMA的基质明显更快的释放是由于更重要的侵蚀性支持。但是,矩阵的主要结构保持一致。孔隙率和曲折度值以及模块的形状解释了所观察到的药物释放。

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