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关于球形化中颗粒间传质的系统评价。

Systematic evaluations regarding interparticular mass transfer in spheronization.

机构信息

Institute of Pharmaceutics and Biopharmaceutics, Heinrich Heine University, Duesseldorf, Germany.

出版信息

Int J Pharm. 2012 Jul 15;431(1-2):84-9. doi: 10.1016/j.ijpharm.2012.04.045. Epub 2012 Apr 23.

Abstract

Pellets are frequently used in pharmaceutical applications. The extrusion-spheronization process is a well-established technique used to produce pellets of a spherical shape and narrow size distribution. In this process, cylindrical extrudates are transformed into spherical pellets by spheronization. Most established mechanisms consider only breakage and deformation to explain pellet formation. An interaction between the rounding extrudates via adhesion of fine particles was not considered for many years. This study deals with the evolution of pellet properties over time during the spheronization process in order to quantify the influence of pellet interactions on their properties. Therefore the most important pelletization aids (MCCI, MCCII and κ-carrageenan) were investigated using acetaminophen as a model drug and lactose as a filler. In the first seconds of the spheronization process, a high fine fraction was seen which decreased during the process. Simultaneously, the material transferred between the pellets increased. However the fine fraction is not high enough to explain the mass transfer; therefore a direct transfer between the pellets was assumed. The pelletization aid has a huge influence on the amount of mass transferred. Whereas κ-carrageenan leads to a quite low mass transfer of 15%, MCCI and MCCII show higher values up to 25%.

摘要

微丸在药物制剂中经常使用。挤出滚圆法是一种成熟的技术,用于生产球形且粒径分布较窄的微丸。在该过程中,通过滚圆将圆柱形挤出物转化为球形微丸。大多数已建立的机制仅考虑通过细颗粒的粘附来解释微丸的形成。多年来,人们一直没有考虑到通过细颗粒的粘附来使圆形挤出物相互作用。本研究旨在研究滚圆过程中微丸特性随时间的演变,以量化微丸相互作用对其特性的影响。因此,使用 MCCI、MCCII 和κ-卡拉胶作为最重要的制粒助剂(MCCI、MCCII 和 κ-卡拉胶),以对乙酰氨基酚作为模型药物和乳糖作为填充剂进行了研究。在滚圆过程的最初几秒钟内,观察到较高的细粉分数,该分数在过程中降低。同时,颗粒之间的物料转移也在增加。然而,细粉分数不足以解释质量转移,因此假设颗粒之间存在直接转移。制粒助剂对转移的质量有很大影响。虽然κ-卡拉胶导致的质量转移仅为 15%,但 MCCI 和 MCCII 则高达 25%。

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