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不同填充剂湿颗粒中水状态的时域核磁共振研究及其对湿法制粒过程和颗粒特性的贡献。

A Time-Domain NMR Study of the State of Water in Wet Granules with Different Fillers and Its Contribution to the Wet Granulation Process and to the Characteristics of Granules.

作者信息

Ito Terushi, Okada Kotaro, Leong Kok Hoong, Hirai Daijiro, Hayashi Yoshihiro, Kumada Shungo, Kosugi Atsushi, Onuki Yoshinori

机构信息

Department of Pharmaceutical Technology, Graduate School of Medical and Pharmaceutical Science, University of Toyama.

Department of Pharmacy, Faculty of Medicine, University of Malaya.

出版信息

Chem Pharm Bull (Tokyo). 2019;67(3):271-276. doi: 10.1248/cpb.c18-00888.

Abstract

The different states of water incorporated in wet granules were studied by a low-field benchtop H-NMR time-domain NMR (TD-NMR) instrument. Wet granules consisting different fillers [cornstarch (CS), microcrystalline cellulose (MCC), and D-mannitol (MAN)] with different water contents were prepared using a high-speed granulator, and then their spin-spin relaxation time (T) was measured using the NMR relaxation technique. The experimental T relaxation curves were analyzed by the two-component curve fitting, and then the individual T relaxation behaviors of solid and water in wet granules were identified. According to the observed T values, it was confirmed that the molecular mobility of water in CS and MCC granules was more restricted than that in the MAN granule. The state of water appeared to be associated with the drying efficiency and moisture absorption capacity of wet granules. Thus, it was confirmed that the state of water significantly affected the wet granulation process and the characteristics of the resultant granules. In the final phase of this study, the effects of binders on the molecular mobility of water in granulation fluids and wet granules were examined. The state of water in granulation fluids was substantially changed by changing the binders. The difference was still detected in wet granules prepared by addition of these fluids to the fillers. In conclusion, TD-NMR can offer valuable knowledge on wet granulation from the viewpoint of molecular mobility of water.

摘要

采用低场台式氢核磁共振时域核磁共振(TD-NMR)仪研究了湿颗粒中结合水的不同状态。使用高速制粒机制备了含有不同填充剂[玉米淀粉(CS)、微晶纤维素(MCC)和D-甘露醇(MAN)]且含水量不同的湿颗粒,然后采用核磁共振弛豫技术测量其自旋-自旋弛豫时间(T)。通过双组分曲线拟合分析实验得到的T弛豫曲线,进而确定湿颗粒中固体和水各自的T弛豫行为。根据观察到的T值,证实CS和MCC颗粒中水的分子迁移率比MAN颗粒中的更受限制。水的状态似乎与湿颗粒的干燥效率和吸湿能力有关。因此,证实水的状态显著影响湿法制粒过程及所得颗粒的特性。在本研究的最后阶段,考察了粘合剂对制粒液和湿颗粒中水的分子迁移率的影响。通过改变粘合剂,制粒液中水的状态发生了显著变化。在将这些液体添加到填充剂中制备的湿颗粒中仍能检测到差异。总之,从水的分子迁移率角度来看,TD-NMR可为湿法制粒提供有价值的信息。

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