Dpto. Farmacia y Tecnología Farmacéutica, Universidad de Sevilla, Sevilla, Spain.
Eur J Pharm Biopharm. 2011 Jan;77(1):111-5. doi: 10.1016/j.ejpb.2010.10.006. Epub 2010 Oct 23.
This paper studies the Riboflavin release from systems made of assembled modules of Dome Matrix® technology using tapioca starch-ethylmethacrylate (TSEMA) and tapioca hydroxypropylstarch-ethylmethacrylate (THSEMA) graft copolymers produced by two different drying methods. Two different shape modules were manufactured for this study, i.e., female and male modules, in order to facilitate their assemblage in "void configuration", a system with an internal void space. Drug release studies on void configurations based on THSEMA show faster releases than TSEMA; HPMC systems used as a comparative reference showed intermediate release. Moreover, using void configurations made with one module of TSEMA and the other of THSEMA is possible to average the drug release, without difference between the drying methods used for the polymers. With respect to the floatation characteristics, all the void configurations floated immediately and, due to the mass center of the system, the floatation position of the system was always axial with the female module up and the male down. The drug release studies performed with a sinker to force the immersion of the systems in the medium did not show differences with respect to the dissolution test without a sinker. The combination of floatation capability of the assembled modules and the prolonged drug release provided with the graft copolymers make these assembled modules candidates as controlled release gastro-retentive dosage forms.
本文研究了使用由 Dome Matrix®技术组装模块制成的系统中核黄素的释放情况,该系统使用了两种不同干燥方法制备的木薯淀粉-甲基丙烯酸乙酯(TSEMA)和木薯羟丙基淀粉-甲基丙烯酸乙酯(THSEMA)接枝共聚物。为了便于在“中空结构”中组装,即具有内部中空空间的系统,制造了两种不同形状的模块,即阴模和阳模。基于 THSEMA 的中空结构的药物释放研究表明,释放速度比 TSEMA 快;用作比较参考的 HPMC 系统显示出中间释放。此外,使用一个 TSEMA 模块和另一个 THSEMA 模块制造的中空结构可以平均药物释放,而与聚合物使用的干燥方法无关。关于漂浮特性,所有中空结构都立即漂浮,由于系统的质心,系统的漂浮位置总是与阴模向上、阳模向下的轴向一致。使用沉子迫使系统浸入介质中进行药物释放研究,与没有沉子的溶解试验相比,没有显示出差异。组装模块的漂浮能力和接枝共聚物提供的延长药物释放相结合,使这些组装模块成为控释胃滞留剂型的候选者。