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通过热熔挤出法制备缓释亲脂性硬脂酸钙微丸。

Development of sustained-release lipophilic calcium stearate pellets via hot melt extrusion.

机构信息

Institute of Pharmaceutical Sciences, Department of Pharmaceutical Technology, Karl-Franzens University, Graz, Austria.

出版信息

Eur J Pharm Biopharm. 2011 Nov;79(3):635-45. doi: 10.1016/j.ejpb.2011.07.004. Epub 2011 Jul 27.

Abstract

The objective of this study was the development of retarded release pellets using vegetable calcium stearate (CaSt) as a thermoplastic excipient. The matrix carrier was hot melt extruded and pelletized with a hot-strand cutter in a one step continuous process. Vegetable CaSt was extruded at temperatures between 100 and 130°C, since at these temperatures cutable extrudates with a suitable melt viscosity may be obtained. Pellets with a drug loading of 20% paracetamol released 11.54% of the drug after 8h due to the great densification of the pellets. As expected, the drug release was influenced by the pellet size and the drug loading. To increase the release rate, functional additives were necessary. Therefore, two plasticizers including glyceryl monostearate (GMS) and tributyl citrate (TBC) were investigated for plasticization efficiency and impact on the in vitro drug release. GMS increased the release rate due to the formation of pores at the surface (after dissolution) and showed no influence on the process parameters. The addition of TBC increased the drug release to a higher extent. After dissolving, the pellets exhibited pores at the surface and in the inner layer. Small- and Wide-Angle X-ray Scattering (SWAXS) revealed no major change in crystalline peaks. The results demonstrated that (nearly) spherical CaSt pellets could be successfully prepared by hot melt extrusion using a hot-strand cutter as downstreaming system. Paracetamol did not melt during the process indicating a solid suspension. Due to the addition of plasticizers, the in vitro release rate could be tailored as desired.

摘要

本研究的目的是开发使用植物性硬脂酸钙 (CaSt) 作为热塑性赋形剂的控释丸。基质载体通过热熔挤出,并在一步连续工艺中使用热线切粒机造粒。植物性 CaSt 在 100 至 130°C 的温度下挤出,因为在此温度下可获得具有合适熔体粘度的可切割挤出物。载药 20%对乙酰氨基酚的丸剂在 8 小时后释放了 11.54%的药物,因为丸剂的密度很大。正如预期的那样,药物释放受到丸剂尺寸和药物载药量的影响。为了提高释放速率,需要功能性添加剂。因此,研究了两种增塑剂,包括单硬脂酸甘油酯 (GMS) 和柠檬酸三丁酯 (TBC),以考察其增塑效率和对体外药物释放的影响。GMS 由于在表面(溶解后)形成孔而增加了释放速率,并且对工艺参数没有影响。TBC 的添加进一步增加了药物释放。溶解后,丸剂表面和内层出现孔隙。小角和广角 X 射线散射 (SWAXS) 未显示出结晶峰的主要变化。结果表明,使用热线切粒机作为下游系统,通过热熔挤出可以成功制备(近乎)球形的 CaSt 丸剂。对乙酰氨基酚在过程中不会熔化,表明处于固态悬浮状态。由于添加了增塑剂,可以根据需要调整体外释放速率。

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