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[药物制造过程管理的进展——从物理药剂学到自动化药物生产]

[Advances in Pharmaceutical Manufacturing Process Management -From Physical Pharmaceutics to Automatic Pharmaceutical Production].

作者信息

Otsuka Makoto

机构信息

School of Pharmacy, Musashino University.

出版信息

Yakugaku Zasshi. 2021;141(12):1343-1357. doi: 10.1248/yakushi.21-00159.

Abstract

Since entering graduate school 43 years ago, I have been studying physical pharmaceutics with a focus on the effects of environmental factors on pharmaceutical properties of solid oral dosage forms during the manufacturing process. I have reported on changes in the characteristics of pharmaceutical products during manufacturing processes, such as grinding, mixing, granulation, and tableting owing to complicated phenomena based on chemical reactions or the crystalline polymorphic transitions of bulk drugs and excipients. To develop modern pharmaceutical manufacturing processes based on process analysis technology (PAT) as a next generation good manufacturing practice, real-time monitoring was introduced in these processes using a non-destructive analytical method, such as the near-infrared spectroscopy combined with chemometrics. Many case studies related to the mixing, granulation, tableting, and coating processes involving PAT have been reported. In those studies, I focused on clarifying the physical and chemical mechanism through "design space" representation. Additionally, non-destructive analytical methods, including X-ray computed tomography, audible acoustic emission, Raman spectroscopy, terahertz spectroscopy, and infrared thermal imaging analysis were applied as novel candidate analytical methods to the pharmaceutical process to monitor critical quality attributes. To achieve this purpose in various pharmaceutical dosage forms, I have been attempting the assembly of a modern manufacturing process managed through a "design space" paradigm involving in-line monitoring using novel analytical methods, multivariate analyses, and feed-back systems.

摘要

自43年前进入研究生院以来,我一直在研究物理药剂学,重点关注环境因素对固体口服剂型在制造过程中药物性质的影响。我曾报道过在制造过程中,如研磨、混合、制粒和压片过程中,由于基于化学反应或原料药及辅料的晶型转变等复杂现象导致的药品特性变化。为了开发基于过程分析技术(PAT)的现代制药制造工艺作为下一代良好生产规范,在这些过程中引入了使用非破坏性分析方法(如近红外光谱结合化学计量学)的实时监测。已经报道了许多与涉及PAT的混合、制粒、压片和包衣过程相关的案例研究。在这些研究中,我专注于通过“设计空间”表示来阐明物理和化学机制。此外,包括X射线计算机断层扫描、声发射、拉曼光谱、太赫兹光谱和红外热成像分析在内的非破坏性分析方法被作为新型候选分析方法应用于制药过程,以监测关键质量属性。为了在各种药物剂型中实现这一目的,我一直在尝试组装一个通过“设计空间”范式管理的现代制造工艺,该范式涉及使用新型分析方法的在线监测、多变量分析和反馈系统。

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