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采用光学相干断层扫描技术对片剂进行在线孔隙率和硬度监测。

In-line porosity and hardness monitoring of tablets by means of optical coherence tomography.

机构信息

Research Center Pharmaceutical Engineering GmbH, Inffeldgasse 13, 8010 Graz, Austria.

Research Center Pharmaceutical Engineering GmbH, Inffeldgasse 13, 8010 Graz, Austria; Institute of Automation and Control, Graz University of Technology, Inffeldgasse 21/B/I, 8010 Graz, Austria.

出版信息

Int J Pharm. 2024 Dec 5;666:124808. doi: 10.1016/j.ijpharm.2024.124808. Epub 2024 Oct 6.

Abstract

In-line monitoring of critical quality attributes (CQAs) during a tableting process is an essential step toward a real-time release strategy. Such CQAs can be the tablet mass, the API content, dissolution, hardness and tensile strength. Since dissolution testing is laborious and time-consuming and cannot be performed in-line, it is desirable to replace dissolution testing with predictive models based on other CQAs that affect the dissolution characteristics, such as the tablet porosity and hardness. Traditionally, porosity is determined offline via gas adsorption methods or other techniques, such as Terahertz spectroscopy or gas in scattering media absorption spectroscopy. Tablet hardness is typically established using a hardness tester. While these destructive tests can readily be performed at-line, they have limited applicability in in-line settings for a high-percentage inspection. Optical coherence tomography (OCT) has recently been proposed as a possible tool for determining quality attributes. This work describes the first application of OCT for the prediction of tablet porosity and hardness. OCT measurements of tablets produced in a ConsiGma 25™ tableting line and a Stylcam 200R compaction simulator in several compaction force settings were performed and correlated with the porosity and hardness. It was demonstrated that OCT can easily be installed in-line and provide real-time information about critical material attributes. These insights confirm the applicability of OCT as a real-time quality control tool and its potential to replace time-consuming and destructive offline measurements.

摘要

在压片过程中对关键质量属性(CQAs)进行在线监测是实现实时放行策略的重要步骤。这些 CQAs 可以是片剂质量、API 含量、溶出度、硬度和拉伸强度。由于溶出度测试既费力又费时,并且不能在线进行,因此希望用基于其他影响溶出特性的 CQAs 的预测模型来替代溶出度测试,例如片剂孔隙率和硬度。传统上,通过气体吸附法或其他技术(如太赫兹光谱或散射介质中气体吸收光谱)离线确定孔隙率。片剂硬度通常使用硬度计来确定。虽然这些破坏性测试可以很容易地在线进行,但它们在高百分比检查的在线设置中的适用性有限。光学相干断层扫描(OCT)最近已被提议作为确定质量属性的一种可能工具。这项工作描述了 OCT 首次用于预测片剂孔隙率和硬度的应用。在 ConsiGma 25™压片机和 Stylcam 200R 压片机在几种压实力设置下生产的片剂上进行了 OCT 测量,并与孔隙率和硬度相关联。结果表明,OCT 可以轻松地在线安装,并提供有关关键材料属性的实时信息。这些见解证实了 OCT 作为实时质量控制工具的适用性及其替代费时且破坏性的离线测量的潜力。

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