School of Pharmacy, University of East Anglia , Norwich, Norfolk, United Kingdom , NR4 7TJ.
College of Pharmacy, University of Basrah , Basrah, Iraq.
Anal Chem. 2015 Nov 3;87(21):10848-55. doi: 10.1021/acs.analchem.5b02192. Epub 2015 Oct 13.
Characterizing inter- and intrasample heterogeneity of solid and semisolid pharmaceutical products is important both for rational design of dosage forms and subsequent quality control during manufacture; however, most pharmaceutical products are multicomponent formulations that are challenging in this regard. Thermal analysis, in particular differential scanning calorimetry, is commonly used to obtain structural information, such as degree of crystallinity, or identify the presence of a particular polymorph, but the results are an average over the whole sample; it cannot directly provide information about the spatial distribution of phases. This study demonstrates the use of a new thermo-optical technique, thermal analysis by structural characterization (TASC), that can provide spatially resolved information on thermal transitions by applying a novel algorithm to images acquired by hot stage microscopy. We determined that TASC can be a low cost, relatively rapid method of characterizing heterogeneity and other aspects of structure. In the examples studied, it was found that high heating rates enabled screening times of 3-5 min per sample. In addition, this study demonstrated the higher sensitivity of TASC for detecting the metastable form of polyethylene glycol (PEG) compared to conventional differential scanning calorimetry (DSC). This preliminary work suggests that TASC will be a worthwhile additional tool for characterizing a broad range of materials.
表征固体制剂和半固体制剂的样品内和样品间的异质性对于合理设计剂型和随后在制造过程中的质量控制都很重要;然而,大多数药物产品是多组分制剂,这在这方面具有挑战性。热分析,特别是差示扫描量热法,通常用于获得结构信息,如结晶度,或识别特定的多晶型物的存在,但结果是整个样品的平均值;它不能直接提供有关相的空间分布的信息。本研究展示了一种新的热光学技术,即通过结构特征分析的热分析(TASC)的应用,该技术可以通过对热台显微镜获得的图像应用新算法来提供有关热转变的空间分辨信息。我们确定 TASC 可以是一种低成本,相对快速的方法,用于表征异质性和结构的其他方面。在研究的示例中,发现高加热速率能够使每个样品的筛选时间达到 3-5 分钟。此外,这项研究表明,与传统的差示扫描量热法(DSC)相比,TASC 对检测聚乙二醇(PEG)的亚稳形式具有更高的灵敏度。这项初步工作表明,TASC 将成为广泛材料的特征化的有价值的附加工具。