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开发一种新型冲头形状以复制实验室压片机上的放大问题 III:使用 SAS 冲头复制粘冲现象,并通过使用 3D 激光扫描显微镜检查片剂表面进行评估。

Development of a New Punch Head Shape to Replicate Scale-Up Issues on a Laboratory Tablet Press III: Replicating Sticking Phenomenon Using the SAS Punch and Evaluation by Checking the Tablet Surface Using 3-D Laser Scanning Microscope.

机构信息

Formulation Research, PST Unit, Medicine Development Center, Eisai Co., Ltd. Kakamigahara-Shi, Gifu 501-6195, Japan.

Formulation Technology, DI Plus Unit, EDCS, Eisai Co., Ltd., Kakamigahara-Shi, Gifu 501-6195, Japan.

出版信息

J Pharm Sci. 2018 Aug;107(8):2144-2151. doi: 10.1016/j.xphs.2018.04.012. Epub 2018 Apr 22.

Abstract

Sticking is a common observation in the scale-up stage on the punch tip using a commercial tableting machine. The difference in the total compression time between a laboratory tableting machine and a commercial one is considered one of the main root causes of scale-up issues in the tableting processes. The proposed "Size Adjusted for Scale-up punch" can be used to adjust the consolidation and dwell times for commercial tableting machine. As a result, the sticking phenomenon is able to be replicated at the pilot scale stage. As reported in this article, the quantification of sticking was done using a 3-D laser scanning microscope to check the tablet surface. It was shown that the sticking area decreased with the addition of magnesium stearate in the formulation, but the sticking depth was not affected by the additional amount of magnesium stearate. It is proposed that the use of a 3-D laser scanning microscope can be applied to evaluate sticking as a process analytical technology tool, and so sticking can be monitored continuously without stopping the machine.

摘要

黏冲是在使用商业压片机进行冲头放大阶段时常见的现象。实验室压片机和商业压片机之间总压缩时间的差异被认为是压片过程中放大问题的主要根本原因之一。所提出的“用于放大的尺寸调整冲头”可用于调整商业压片机的固结和停留时间。结果,能够在中试阶段复制黏冲现象。如本文所述,使用 3D 激光扫描显微镜对黏冲进行定量,以检查片剂表面。结果表明,随着配方中硬脂酸镁的添加,黏冲面积减小,但黏冲深度不受硬脂酸镁添加量的影响。有人提出,使用 3D 激光扫描显微镜可以作为一种过程分析技术工具来评估黏冲,因此可以在不停机的情况下连续监测黏冲。

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