湿水造粒法制备盐酸二甲双胍大剂量配方中粘结剂含水率的重要性

Hiroshi Takasaki , Etsuo Yonemochi , Masanori Ito , Koichi Wada , Katsuhide Terada
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引用次数: 13

摘要

本研究的目的是评估使用湿水造粒(MAG)工艺改善二甲双胍HCL (Met)颗粒流动性和致密性的粘合剂。考察了粘结剂含水量对颗粒剂和片剂质量的影响。研究了乙烯基吡啶酮-醋酸乙烯共聚物(Kollidon VA64 fine: VA64)、聚维酮(Povidone K12: PVP)、羟丙基纤维素(HPC SSL SF: HPC)和羟丙基甲基纤维素(Methocel E5 LV: HPMC)作为粘结剂。除HPMC外,这些颗粒的产压均低于Met活性药物成分(API)。HPMC Met颗粒化不充分,水量小。在压片过程中没有观察到VA64 Met颗粒的问题。在压片过程中,HPC蛋氨酸颗粒呈碗状,PVP蛋氨酸颗粒呈粘稠状。这些碗状和粘连的趋势可能分别是由于HPC的低吸湿性和PVP的高结合水量。VA64 Met颗粒具有最高的环境含水率(散装水、结合水)和吸湿性。综上所述,Met MAG工艺中使用的粘合剂类型对颗粒流动和压实性以及吸湿性和水分平衡的维持都有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The importance of binder moisture content in Metformin HCL high-dose formulations prepared by moist aqueous granulation (MAG)

The importance of binder moisture content in Metformin HCL high-dose formulations prepared by moist aqueous granulation (MAG)

The aim of this study was to evaluate binders to improve the flowability of granulates and compactibility of Metformin HCL (Met) using the moist aqueous granulation (MAG) process. The effect of the binder moisture content on granulate and tablet quality was also evaluated. Vinylpyrrolidone–vinyl acetate copolymer (Kollidon VA64 fine: VA64), polyvidone (Povidone K12: PVP), hydroxypropyl cellulose (HPC SSL SF: HPC) and hydroxypropyl methylcellulose (Methocel E5 LV: HPMC) were evaluated as binders. These granulates, except for HPMC, had a lower yield pressure than Met active pharmaceutical ingredient (API). HPMC Met was not sufficiently granulated with low water volume. No problems were observed with the VA64 Met granulates during the tableting process. However, HPC Met granulates had a bowl-forming tendency, and PVP Met granulates had the tendency to stick during the tableting process. These bowl-forming and sticking tendencies may have been due to the low moisture absorbency of HPC and the high volume of bound water of PVP, respectively. VA64 Met granulates had the highest ambient moisture content (bulk water, bound water) and moisture absorbency. It was concluded that the type of binder used for the Met MAG process has an impact on granulate flow and compactibility, as well as moisture absorbency and maintenance of moisture balance.

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