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通过时间分辨X射线显微断层扫描评估个体和晶体群体的溶解速率

Evaluation of Individual and Crystal Population Dissolution Rates by Time-Resolved X-ray Microtomography.

作者信息

Hládek Filip, Zůza David, Navrátil Ondřej, Tomas Jan, Zadražil Aleš, Novák Vladimír, Štěpánek František

机构信息

Department of Chemical Engineering, University of Chemistry and Technology, Prague, Technická 5, Praha 166 28, Czech Republic.

Zentiva, k.s., U Kabelovny 130, Praha 10 102 00, Czech Republic.

出版信息

Cryst Growth Des. 2024 Apr 3;24(13):5468-5477. doi: 10.1021/acs.cgd.4c00113. eCollection 2024 Jul 3.

Abstract

The intrinsic dissolution rate (IDR) is an important parameter in pharmaceutical science that measures the rate at which a pure crystalline active pharmaceutical ingredient dissolves in the absence of diffusion limitations. Traditional IDR measurement techniques do not capture the complex interplay between particle morphology, fluid flow, and dissolution dynamics. The dissolution rate of individual particles can differ from the population average because of factors such as particle size, surface roughness, or exposure of individual crystal facets to the dissolution medium. The aim of this work was to apply time-resolved X-ray microtomography imaging and simultaneously measure the individual dissolution characteristics of a large population of crystalline particles placed in a packed bed perfused by the dissolution medium. Using NaCl crystals in three different size fractions as a model, time-resolved microtomography made it possible to visualize the dissolution process in a custom-built flow cell. Subsequent 3D image analysis was used to evaluate changes in the shape, size, and surface area of individual particles by tracking them as they are dissolved. Information about the particle population statistics and intrabatch variability provided a deeper insight into the dissolution process that can complement established IDR measurements.

摘要

固有溶解速率(IDR)是药学领域的一个重要参数,用于衡量纯结晶活性药物成分在无扩散限制情况下的溶解速率。传统的IDR测量技术无法捕捉颗粒形态、流体流动和溶解动力学之间的复杂相互作用。由于颗粒大小、表面粗糙度或单个晶面暴露于溶解介质等因素,单个颗粒的溶解速率可能与总体平均值不同。这项工作的目的是应用时间分辨X射线显微断层成像技术,同时测量置于由溶解介质灌注的填充床中的大量结晶颗粒的个体溶解特性。以三种不同粒径级分的NaCl晶体为模型,时间分辨显微断层成像使在定制的流动池中可视化溶解过程成为可能。随后的三维图像分析用于通过跟踪单个颗粒溶解过程来评估其形状、大小和表面积的变化。有关颗粒群体统计和批内变异性的信息为溶解过程提供了更深入的见解,可补充已有的IDR测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29c1/11228913/a7118441ec2a/cg4c00113_0001.jpg

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