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崩解力动力学用于研究生产参数对螺内酯片剂性质影响的适用性。

The suitability of disintegrating force kinetics for studying the effect of manufacturing parameters on spironolactone tablet properties.

作者信息

Massimo Gina, Santi Patrizia, Colombo Gaia, Nicoli Sara, Zani Franca, Colombo Paolo, Bettini Ruggero

机构信息

Department of Pharmacy, University of Parma, Italy.

出版信息

AAPS PharmSciTech. 2003;4(2):E17. doi: 10.1208/pt040217.

Abstract

The aim of this paper was to study the effect of the granulate properties and tablet compression force on disintegrating force behavior in order to investigate the capability of the disintegrating force to characterize tablets that have the same composition but were manufactured in different conditions. Several tablets containing spironolactone in the external or internal granulated mixture of calcium carbonate and maize starch differing in particle size distribution, were prepared at 3 compression levels. The force developed by tablets during water uptake and disintegration was measured and plotted versus time. The curves obtained were analyzed by the Weibull equation in order to calculate the parameters characterizing the tablet disintegration kinetics. The disintegrating force time parameter, the maximum force developed, and the area under the curve were determined. In general, the reduction of time parameter value and/or the increase in maximum force developed corresponded to an acceleration in tablet disintegration. In addition, the area under the force curve increased in stronger tablets, monitoring in a sensitive way the tablet structural changes introduced by compression force. The results showed that the disintegrating force measurement can detect small changes in the structure of the tablet that cannot be discriminated by pharmacopoeia tests. The effect of manufacturing, in particular compression force, on tablet properties was quantified by the parameters of disintegrating force kinetics.

摘要

本文旨在研究颗粒性质和片剂压片力对崩解力行为的影响,以考察崩解力表征具有相同组成但在不同条件下制备的片剂的能力。制备了几种在碳酸钙和玉米淀粉的外部或内部制粒混合物中含有螺内酯的片剂,这些混合物的粒度分布不同,并在3个压片水平下进行压制。测量片剂在吸水和崩解过程中产生的力,并将其与时间作图。通过威布尔方程分析所得曲线,以计算表征片剂崩解动力学的参数。确定了崩解力时间参数、产生的最大力以及曲线下面积。一般来说,时间参数值的降低和/或产生的最大力的增加对应于片剂崩解的加速。此外,较强片剂的力曲线下面积增加,以灵敏的方式监测由压片力引起的片剂结构变化。结果表明,崩解力测量能够检测到片剂结构中药典测试无法区分的微小变化。通过崩解力动力学参数对生产过程(特别是压片力)对片剂性质的影响进行了量化。

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