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布洛芬与β-环糊精的高剪切混合制粒:工艺变量对布洛芬溶出度的影响

High shear mixing granulation of ibuprofen and beta-cyclodextrin: effects of process variables on ibuprofen dissolution.

作者信息

Ghorab Mohamed K, Adeyeye Moji Christianah

机构信息

Graduate School of Pharmaceutical Sciences, Duquesne University, Pittsburgh, PA 15282, USA.

出版信息

AAPS PharmSciTech. 2007 Oct 19;8(4):E84. doi: 10.1208/pt0804084.

Abstract

The aims of the study were to evaluate the effect of high shear mixer (HSM) granulation process parameters and scale-up on wet mass consistency and granulation characteristics. A mixer torque rheometer (MTR) was employed to evaluate the granulating solvents used (water, isopropanol, and 1:1 vol/vol mixture of both) based on the wet mass consistency. Gral 25 and mini-HSM were used for the granulation. The MTR study showed that the water significantly enhanced the beta-cyclodextrin (beta CD) binding tendency and the strength of liquid bridges formed between the particles, whereas the isopropanol/water mixture yielded more suitable agglomerates. Mini-HSM granulation with the isopropanol/water mixture (1:1 vol/vol) showed a reduction in the extent of torque value rise by increasing the impeller speed as a result of more breakdown of agglomerates than coalescence. In contrast, increasing the impeller speed of the Gral 25 resulted in higher torque readings, larger granule size, and consequently, slower dissolution. This was due to a remarkable rise in temperature during Gral granulation that reduced the isopropanol/water ratio in the granulating solvent as a result of evaporation and consequently increased the beta CD binding strength. In general, the HSM granulation retarded ibuprofen dissolution compared with the physical mixture because of densification and agglomeration. However, a successful HSM granulation scale-up was not achieved due to the difference in the solvent mixture's effect from 1 scale to the other.

摘要

本研究的目的是评估高剪切混合器(HSM)制粒工艺参数及放大对湿物料稠度和制粒特性的影响。使用混合器扭矩流变仪(MTR)基于湿物料稠度评估所使用的制粒溶剂(水、异丙醇以及二者1:1体积比的混合物)。采用Gral 25和小型HSM进行制粒。MTR研究表明,水显著增强了β-环糊精(β-CD)的结合趋势以及颗粒间形成的液桥强度,而异丙醇/水混合物产生了更合适的团聚体。使用异丙醇/水混合物(1:1体积比)进行小型HSM制粒时,由于团聚体的破碎多于聚结,随着叶轮速度增加,扭矩值上升幅度减小。相比之下,提高Gral 25的叶轮速度会导致扭矩读数更高、颗粒尺寸更大,进而溶解更慢。这是由于Gral制粒过程中温度显著升高,导致制粒溶剂中的异丙醇/水比例因蒸发而降低,从而增加了β-CD的结合强度。总体而言,与物理混合物相比,HSM制粒由于致密化和团聚作用而延缓了布洛芬的溶解。然而,由于不同规模下溶剂混合物效果存在差异,未能成功实现HSM制粒的放大。

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