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制造工艺变量对用羟丙基甲基纤维素制备的缓释片体外溶出特性的影响。

Effects of manufacturing process variables on in vitro dissolution characteristics of extended-release tablets formulated with hydroxypropyl methylcellulose.

作者信息

Huang Ye, Khanvilkar Kavita H, Moore Angela D, Hilliard-Lott Marquetta

机构信息

Mallinckrodt, Inc., A Division of Tyco Healthcare, St. Louis, Missouri, USA.

出版信息

Drug Dev Ind Pharm. 2003 Jan;29(1):79-88. doi: 10.1081/ddc-120016686.

Abstract

The purpose of this study was to investigate the effect of three process variables: distribution of hydroxypropyl methylcellulose (HPMC) within the tablet matrix, amount of water for granulation, and tablet hardness on drug release from the hydrophilic matrix tablets. Tablets were made both by direct compression as well as wet granulation method. Three formulations were made by wet granulation, all three having the exact same composition but differing in intragranular:intergranular HPMC distribution in the matrix. Further, each formulation was made using two different amounts of water for granulation. All tablets were then compressed at two hardness levels. Dissolution studies were performed on all tablets using USP dissolution apparatus I (basket). The dissolution parameters obtained were statistically analyzed using a multilevel factorial-design approach to study the influence of the various process variables on drug release from the tablets. Results indicated that a change in the manufacturing process could yield significantly dissimilar dissolution profiles for the same formulation, especially at low-hardness level. Overgranulation could lead to tablets showing hardness-dependent drug-release characteristics. Studies showed that intergranular addition of a partial amount of HPMC (i.e., HPMC addition outside of granules) provided a significant advantage in making the formulation more robust over intragranular addition (i.e., that in which the entire amount of HPMC was added to the granules). Dissolution profiles obtained for these tablets were relatively less dependent on tablet hardness irrespective of the amount of water added during granulation.

摘要

本研究的目的是考察三个工艺变量

羟丙基甲基纤维素(HPMC)在片剂基质中的分布、制粒用水量以及片剂硬度对亲水性基质片剂药物释放的影响。片剂通过直接压片法和湿法制粒法制备。通过湿法制粒制备了三种制剂,所有三种制剂的组成完全相同,但基质中颗粒内:颗粒间HPMC分布不同。此外,每种制剂使用两种不同量的水进行制粒。然后所有片剂在两种硬度水平下压片。使用美国药典溶出度装置I(篮法)对所有片剂进行溶出度研究。使用多水平析因设计方法对获得的溶出参数进行统计分析,以研究各种工艺变量对片剂药物释放的影响。结果表明,对于相同的制剂,制造工艺的改变可能会产生显著不同的溶出曲线,尤其是在低硬度水平下。过度制粒可能导致片剂呈现硬度依赖性药物释放特性。研究表明,颗粒间添加部分量的HPMC(即颗粒外添加HPMC)在使制剂比颗粒内添加(即所有HPMC都添加到颗粒中)更稳定方面具有显著优势。无论制粒过程中添加的水量如何,这些片剂获得的溶出曲线相对较少依赖于片剂硬度。

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