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利用同步加速器 X 射线微断层扫描和超像素图像聚类研究微型片剂内的药物颗粒分布。

Study of drug particle distributions within mini-tablets using synchrotron X-ray microtomography and superpixel image clustering.

机构信息

Division of Pharmaceutical Technology, Department of Pharmaceutical Sciences, University of Basel, Switzerland.

Swiss Tropical and Public Health Institute, Basel, Switzerland; University of Basel, Basel, Switzerland.

出版信息

Int J Pharm. 2020 Jan 5;573:118827. doi: 10.1016/j.ijpharm.2019.118827. Epub 2019 Nov 19.

Abstract

Uniform drug distribution within fast disintegrating tablets is a key quality measure to ensure a reliable, steady, and targeted release of the contained active pharmaceutical ingredients. In this work, the drug particle distribution in mini-tablets was studied with synchrotron phase contrast X-ray microtomography. Mini-tablets had a weight of 9.5 mg and a drug load from 2.5% to 20%. Moxidectin, a drug used for treatment of parasitic infections, was used as a model compound. Drug content covered a range from 91% to 121% of the target dose. A linear iterative clustering (SLIC) superpixel method was used for segmentation, analysis, and visualization of the spatial distribution of individual tablet components (i.e., pores, excipients, and drug). Results show that the drug was not uniformly distributed within the tablet, revealing an increasing drug load towards the tablets' outer boundaries and thus indicative of a radial displacement of drug particles during compaction. The presented method can be used for the quantitative analysis of drug content and drug distribution within pharmaceutical tablets, allowing for the optimization of fast disintegrating formulations. The results also affirm that that drug loads up to 20% will not lead to segregation for moxidectin.

摘要

在速崩片中实现药物的均匀分布是确保所载活性药物成分可靠、稳定和靶向释放的关键质量指标。在这项工作中,使用同步辐射相衬 X 射线微断层摄影术研究了迷你片剂中的药物颗粒分布。迷你片剂的重量为 9.5 毫克,药物负载量从 2.5%到 20%不等。莫昔克丁是一种用于治疗寄生虫感染的药物,被用作模型化合物。药物含量涵盖了目标剂量的 91%至 121%。线性迭代聚类 (SLIC) 超像素方法用于分割、分析和可视化单个片剂成分(即孔、赋形剂和药物)的空间分布。结果表明,药物在片剂内部不均匀分布,在片剂的外边界处药物负载量增加,这表明在压缩过程中药物颗粒发生了径向位移。所提出的方法可用于定量分析药物在片剂中的含量和分布,从而优化速崩制剂。结果还证实,莫昔克丁的药物负载量高达 20%不会导致分离。

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