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脆性颗粒压实特性对滚压造粒法增大粒径的不敏感性。

Insensitivity of compaction properties of brittle granules to size enlargement by roller compaction.

作者信息

Wu Sy-Juen, Sun Changquan 'Calvin'

机构信息

Pfizer Global Supply Chain, Global Research and Development, Ann Arbor, Michigan 48105, USA.

出版信息

J Pharm Sci. 2007 May;96(5):1445-50. doi: 10.1002/jps.20929.

Abstract

Pharmaceutical granules prepared by roller compaction often exhibit significant loss of tabletability, that is, reduction in tensile strength, when compared to virgin powder. This may be attributed to granule size enlargement for highly plastic materials, for example, microcrystalline cellulose. The sensitivity of powder compaction properties on granule size variations impacts the robustness of the dry granulation process. We hypothesize that such sensitivity of compaction properties on granule size is minimum for brittle materials because extensive fracture of brittle granules during compaction minimizes differences in initial granule size. We tested the hypothesis using three common brittle excipients. Results show that the fine (44-106 microm), medium (106-250 microm), and coarse (250-500 microm) granules exhibit essentially identical tabletability below a certain critical compaction pressure, 100, 140, and 100 MPa for spray-dried lactose monohydrate, anhydrous dibasic calcium phosphate, and mannitol, respectively. Above respective critical pressure, tabletability lines diverge with smaller granules exhibiting slightly higher tablet tensile strength at identical compaction conditions. Overall, tabletability of brittle granules is insensitive to granule size enlargement. The results provide a scientific basis to the common practice of incorporating brittle filler to a typical tablet formulation processed by roller compaction granulation.

摘要

与原始粉末相比,通过滚压法制得的药物颗粒通常表现出明显的可压性损失,即抗张强度降低。这可能归因于高塑性材料(例如微晶纤维素)的颗粒尺寸增大。粉末压实特性对颗粒尺寸变化的敏感性会影响干法制粒过程的稳健性。我们假设,对于脆性材料而言,压实特性对颗粒尺寸的这种敏感性最小,因为压实过程中脆性颗粒的广泛破碎会使初始颗粒尺寸的差异最小化。我们使用三种常见的脆性辅料对该假设进行了测试。结果表明,对于喷雾干燥的一水乳糖、无水磷酸氢钙二水合物和甘露醇,细颗粒(44 - 106微米)、中颗粒(106 - 250微米)和粗颗粒(250 - 500微米)在低于某个临界压实压力时表现出基本相同的可压性,该临界压实压力分别为100、140和100兆帕。在各自的临界压力以上,可压性曲线出现分歧,在相同的压实条件下,较小颗粒表现出略高的片剂抗张强度。总体而言,脆性颗粒的可压性对颗粒尺寸增大不敏感。这些结果为在通过滚压法制粒处理的典型片剂配方中加入脆性填充剂的常见做法提供了科学依据。

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