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通过热熔挤出和滚圆工艺制备球形微丸。

Production of spherical pellets by a hot-melt extrusion and spheronization process.

作者信息

Young Christopher R, Koleng John J, McGinity James W

机构信息

Drug Dynamics Institute, College of Pharmacy, The University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Int J Pharm. 2002 Aug 21;242(1-2):87-92. doi: 10.1016/s0378-5173(02)00152-7.

Abstract

Controlled-release theophylline containing spherical pellets were successfully produced by a hot-melt extrusion (HME) and spheronization process. A powder blend of anhydrous theophylline, Eudragit Preparation 4135 F, microcrystalline cellulose and polyethylene glycol 8000 powder was sieved, blended and then melt-extruded in a Randcastle Microtruder. The hot-melt extruded pellets were prepared by first cutting a thin, extruded composite rod into symmetrical pellets. The pellets were then spheronized in a traditional spheronizer at an elevated temperature. Thermal properties of the pellet formulation components and the hot-melt extrudate were studied to determine suitability of the formulation for HME. Pellets were examined using scanning electron microscopy to determine the effect of spheronization time on surface morphology. The rate of release of theophylline from the hot-melt extruded spherical pellets was characterized using USP 24 Apparatus 2 dissolution testing after initial pellet production and after 1 year storage in sealed HDPE containers at 25 degrees C/60% RH.

摘要

通过热熔挤出(HME)和滚圆工艺成功制备了含控释茶碱的球形微丸。将无水茶碱、尤特奇4135 F、微晶纤维素和聚乙二醇8000粉末的粉末混合物过筛、混合,然后在Randcastle微型挤出机中进行热熔挤出。首先将热熔挤出的复合细棒切成对称的微丸,制备热熔挤出微丸。然后将微丸在传统滚圆机中于高温下滚圆。研究了微丸制剂组分和热熔挤出物的热性能,以确定该制剂对热熔挤出的适用性。使用扫描电子显微镜检查微丸,以确定滚圆时间对表面形态的影响。在最初制备微丸后以及在25℃/60%相对湿度下密封的高密度聚乙烯容器中储存1年后,使用美国药典24装置2溶出度试验对热熔挤出球形微丸中茶碱的释放速率进行了表征。

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