首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Modeling, design and manufacture of innovative floating gastroretentive drug delivery systems based on hot-melt extruded tubes
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Modeling, design and manufacture of innovative floating gastroretentive drug delivery systems based on hot-melt extruded tubes

机译:基于热熔挤压管的创新浮动燃气引入药物递送系统的建模,设计与制造

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摘要

The problem of many gastroretentive systems is the mechanistic connection of drug release and gastric retention control. This connection could be successfully separated by formulating hollow tubes via hot-melt extrusion and sealing both tube ends, which led to immediately floating devices. The tube wall consisted of metformin crystals embedded in an inert polymer matrix of Eudragit (R) RS PO and E PO. Very high drug loadings of up to 80% (w/w) were used without generating a 'burst release'. Sustained release profiles from four to more than twelve hours were achieved by varying the polymer proportions without affecting the floatability. Buoyancy was found to mainly depend on the cylinder design, i.e. the outer to inner diameter ratio. This allowed the polymer/metformin composition to be changed without affecting buoyancy, i.e. a separation of floatability and release control was achieved. A prediction model was implemented that allowed for the buoyancy force to be determined with high accuracy by selecting a suitable ratio of outer to inner diameter of the modular tube die. Wall thickness and mass normalized surface area were identified as geometric parameters that mainly influenced the release properties. Conclusively, this study offers a highly flexible and rational manufacturing approach for the development of gastroretentive floating drug delivery systems.
机译:许多胃术密度系统的问题是药物释放和胃保留控制的机械连接。通过使用热熔挤出和密封两个管端,可以通过配制中空管成功分离这种连接,这两个管端部导致立即浮动装置。管壁由嵌入Eudragit(R)RS PO和E PO的惰性聚合物基质中的二甲双胍晶体组成。使用高达80%(w / w)的非常高的药物载体而不产生“爆发释放”。通过改变聚合物比例而不影响润滑性来实现从四到十二小时的持续释放曲线。发现浮力主要取决于气缸设计,即内径比例。这允许聚合物/二甲双胍组合物在不影响浮力的情况下改变,即实现了浮动性和释放对照的分离。实现了预测模型,其允许通过选择模块化管模具的外部直径的合适的比率来确定浮力以高精度确定。壁厚和质量归一化表面积被鉴定为几何参数,主要影响释放性能。结论,本研究提供了一种高度灵活性和理性的制造方法,可用于开发肉欲浮动药物递送系统。

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