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A Novel Floating Controlled Release Drug Delivery System Prepared by Hot-Melt Extrusion

机译:热熔挤出制备的新型浮动控释药物输送系统

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摘要

Floating dosage forms are an important formulation strategy for drugs with a narrow absorption window and low intestinal solubility, and for localized gastric treatment. Novel floating pellets were prepared using the hot-melt extrusion (HME) technology. Uniformly foamed strands were created by liquid injection pumping and screw configuration modification. The ammonio methacrylate copolymer (Eudragit® RSPO) foaming structure was formed by a liquid-vapor phase transition inside the strand upon die exiting resulting from the sudden decrease in external pressure, vaporizing the liquid ethanol and vacating the extruded material. This generated uniform vacuous regions in the extrudate. The pellets’ internal structure was investigated using scanning electron microscopy (SEM). The formulation constituents’ and processing parameters’ effects on the drug release profiles, floating force, and the pellets’ micromeritic properties were evaluated by design of experiments: all formulations showed zero lag time and excellent floating strength, indicating immediate-floating pellet formation. The pellets’ drug release profiles were controlled by multiple independent variables at different time points (≤24 h). Drug loading significantly affected drug release within the first hour; the hydroxypropyl methylcellulose (HPMC) content thereafter. Understanding the variables’ effects on the formulations allows for the tailoring of this delivery system to obtain various drug release profiles.
机译:对于具有窄吸收窗和低肠溶解度的药物以及局部胃治疗,浮动剂型是重要的制剂策略。使用热熔挤出(HME)技术制备了新型的漂浮颗粒。通过注液泵和修改螺杆配置可产生均匀发泡的线束。甲基丙烯酸氨酯共聚物(Eudragit ® RSPO)的发泡结构是在模头退出时,由于外部压力的突然下降,液体乙醇的汽化并使挤出的物料腾空而在模头内发生液相-气相转变而形成的。材料。这在挤出物中产生均匀的空泡区域。使用扫描电子显微镜(SEM)研究了颗粒的内部结构。通过实验设计评估了配方成分和加工参数对药物释放曲线,漂浮力和微丸微微特性的影响:所有配方均显示零滞后时间和优异的漂浮强度,表明立即漂浮的微丸形成。药丸的药物释放曲线在不同时间点(≤24小时)由多个独立变量控制。载药量在第一个小时内显着影响药物释放;此后,羟丙基甲基纤维素(HPMC)的含量。了解变量对配方的影响后,便可以定制此递送系统以获得各种药物释放曲线。

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