Imperial College London, Department of Chemical Engineering, South Kensington Campus, London SW7 2AZ, United Kingdom.
Imperial College London, Department of Chemical Engineering, South Kensington Campus, London SW7 2AZ, United Kingdom.
Spectrochim Acta A Mol Biomol Spectrosc. 2018 May 15;197:10-29. doi: 10.1016/j.saa.2017.12.055. Epub 2017 Dec 21.
Vibrational spectroscopic imaging and mapping approaches have continued in their development and applications for the analysis of pharmaceutical formulations. Obtaining spatially resolved chemical information about the distribution of different components within pharmaceutical formulations is integral for improving the understanding and quality of final drug products. This review aims to summarise some key advances of these technologies over recent years, primarily since 2010. An overview of FTIR, NIR, terahertz spectroscopic imaging and Raman mapping will be presented to give a perspective of the current state-of-the-art of these techniques for studying pharmaceutical samples. This will include their application to reveal spatial information of components that reveals molecular insight of polymorphic or structural changes, behaviour of formulations during dissolution experiments, uniformity of materials and detection of counterfeit products. Furthermore, new advancements will be presented that demonstrate the continuing novel applications of spectroscopic imaging and mapping, namely in FTIR spectroscopy, for studies of microfluidic devices. Whilst much of the recently developed work has been reported by academic groups, examples of the potential impacts of utilising these imaging and mapping technologies to support industrial applications have also been reviewed.
振动光谱成像和映射方法在药物制剂分析中的应用和发展仍在继续。获得药物制剂中不同成分分布的空间分辨化学信息对于提高最终药物产品的质量和理解至关重要。本综述旨在总结近年来这些技术的一些关键进展,主要是自 2010 年以来的进展。将介绍 FTIR、NIR、太赫兹光谱成像和拉曼映射的概述,以了解这些技术在研究药物样品方面的最新技术水平。这将包括它们在揭示成分空间信息方面的应用,这些信息揭示了多晶型或结构变化、制剂在溶解实验过程中的行为、材料的均匀性和假冒产品的检测方面的分子见解。此外,还将介绍新的进展,展示光谱成像和映射的持续新颖应用,即在 FTIR 光谱学中,用于研究微流控器件。虽然最近开发的大部分工作都是由学术团体报告的,但也审查了利用这些成像和映射技术支持工业应用的潜在影响的例子。