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基于乳糖和玉米淀粉的新型共处理化合物用于片剂配方的评估。

Evaluation of a new coprocessed compound based on lactose and maize starch for tablet formulation.

作者信息

Hauschild Karsten, Picker-Freyer Katharina M

机构信息

Faculty of Pharmacy, Institute of Pharmaceutical Technology and Biopharmacy, Martin-Luther-University Halle-Wittenberg, Wolfgang-Langenbeck-Strasse 4, 06120 Halle/Saale, Germany.

出版信息

AAPS PharmSci. 2004 May 26;6(2):e16. doi: 10.1208/ps060216.

Abstract

The development of new direct compression excipients should include a comprehensive and rapid determination of deformation properties. The aim of this study was to characterize StarLac, a new coprocessed compound for direct compression based on lactose and maize starch. For this purpose, the effects of the base materials (maize starch and spray-dried lactose) were considered and the influence of the spray-drying process was investigated. This was performed by comparing the physical mixture of starch and spray-dried lactose at the same ratio as for StarLac. For analysis of the deformation behavior, the 3-D model and the Walker equation were applied; for verification, the Heckel equation and the pressure time function (a modified Weibull equation) were used. The advantages of StarLac are its good flowability depending on the spray-drying process, an acceptable crushing force due to its lactose content, its rapid disintegration depending on starch, and a brilliant fast release of an active ingredient, such as theophylline monohydrate. The volume-pressure deformation properties of StarLac were dependent on the lactose properties. Only at high maximum relative density (rho(rel, max)) did the influence of starch cause a change in these properties. A network-like structure can be observed using scanning electron microscopy pictures. Overall, StarLac deformed plastically with a low portion of elasticity. The physical mixture exhibited a more elastic behavior than StarLac. However, the part of the powder that was irreversibly compressed was much lower than was observed for the single substances. This behavior is caused by an interaction between the components, which in StarLac is prevented by spray drying.

摘要

新型直接压片辅料的研发应包括对其变形特性进行全面且快速的测定。本研究旨在对StarLac进行特性描述,StarLac是一种基于乳糖和玉米淀粉的新型直接压片共处理化合物。为此,考虑了基础材料(玉米淀粉和喷雾干燥乳糖)的影响,并研究了喷雾干燥过程的影响。这是通过比较淀粉和喷雾干燥乳糖按与StarLac相同比例制成的物理混合物来实现的。为了分析变形行为,应用了三维模型和沃克方程;为了进行验证,使用了赫克尔方程和压力时间函数(一种修正的韦布尔方程)。StarLac的优点在于,取决于喷雾干燥过程,它具有良好的流动性;由于其乳糖含量,它具有可接受的压碎力;取决于淀粉,它具有快速崩解性;并且对于活性成分(如无水茶碱)具有出色的快速释放能力。StarLac的体积 - 压力变形特性取决于乳糖的特性。只有在高最大相对密度(rho(rel, max))时,淀粉的影响才会导致这些特性发生变化。使用扫描电子显微镜照片可以观察到一种网络状结构。总体而言,StarLac以低弹性部分进行塑性变形。物理混合物表现出比StarLac更具弹性的行为。然而,不可逆压缩的粉末部分比单一物质观察到的要低得多。这种行为是由组分之间的相互作用引起的,在StarLac中这种相互作用通过喷雾干燥得以防止。

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引用本文的文献

本文引用的文献

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