Instituto de Química Rosario (IQUIR, CONICET-UNR) and Área Análisis de Medicamentos, Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Suipacha 531, Rosario (S2002LRK), Argentina.
Instituto de Química Rosario (IQUIR, CONICET-UNR) and Área Análisis de Medicamentos, Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Suipacha 531, Rosario (S2002LRK), Argentina.
J Pharm Biomed Anal. 2018 Jan 5;147:518-537. doi: 10.1016/j.jpba.2017.06.018. Epub 2017 Jun 13.
Current regulations command to properly characterize pharmaceutically relevant solid systems. Chemometrics comprise a range of valuable tools, suitable to process large amounts of data and extract valuable information hidden in their structure. This review aims to detail the results of the fruitful association between analytical techniques and chemometrics methods, focusing on those which help to gain insight into the characteristics of drug polymorphism as an important aspect of the solid state of bulk drugs and drug products. Hence, the combination of Raman, terahertz, mid- and near- infrared spectroscopies, as well as instrumental signals resulting from X-ray powder diffraction, C solid state nuclear magnetic resonance spectroscopy and thermal methods with quali-and quantitative chemometrics methodologies are examined. The main issues reviewed, concerning pharmaceutical drug polymorphism, include the use of chemometrics-based approaches to perform polymorph classification and assignment of polymorphic identity, as well as the determination of given polymorphs in simple mixtures and complex systems. Aspects such as the solvation/desolvation of solids, phase transformation, crystallinity and the recrystallization from the amorphous state are also discussed. A brief perspective of the field for the next future is provided, based on the developments of the last decade and the current state of the art of analytical instrumentation and chemometrics methodologies.
现行法规要求对药物相关的固体系统进行适当的特征描述。化学计量学包含一系列有价值的工具,适用于处理大量数据并提取隐藏在其结构中的有价值信息。本文旨在详细介绍分析技术和化学计量学方法之间富有成效的结合,重点介绍那些有助于深入了解药物多晶型现象特征的方法,这是药物及其制剂固体状态的一个重要方面。因此,本文考察了拉曼、太赫兹、中红外和近红外光谱,以及 X 射线粉末衍射、C 固体核磁共振波谱和热法产生的仪器信号,与定性和定量化学计量学方法相结合。本文综述了与药物多晶型相关的主要问题,包括使用基于化学计量学的方法进行多晶型分类和鉴定,以及在简单混合物和复杂体系中测定特定多晶型。还讨论了诸如固体的溶剂化/去溶剂化、相变、结晶度以及从无定形状态的再结晶等方面。根据过去十年的发展和分析仪器及化学计量学方法的现状,为未来提供了该领域的简要展望。