Los Alamos National Laboratory, Bioscience Division, Los Alamos, NM 87454, USA.
Drug Test Anal. 2012 Mar-Apr;4(3-4):298-302. doi: 10.1002/dta.374. Epub 2011 Nov 24.
Vibrational spectroscopy has a long history as an important spectroscopic method in chemical and pharmaceutical analysis. Instrumentation for infrared (IR) spectroscopy was revolutionized by the introduction of Fourier Transform Infrared (FTIR) spectrometers. In addition, easier sampling combined with better sample-to-sample reproducibility and user-to-user spectral variation became available with attenuated total reflectance (ATR) probes and their application for in situ IR spectroscopy. These innovations allow many new applications in chemical and pharmaceutical analysis, such as the use of IR spectroscopy in Process Analytical Chemistry (PAC), the quantitation of drugs in complex matrix formulations, the analysis of protein binding and function and in combination with IR microscopy to the emergence of IR imaging technologies. The use of ATR-FTIR instruments in forensics and first response to 'white powder' incidents is also discussed. A short overview is given in this perspective article with the aim to renew and intensify interest in IR spectroscopy.
振动光谱学作为化学和药物分析中一种重要的光谱方法,具有悠久的历史。傅里叶变换红外(FTIR)光谱仪的引入彻底改变了红外(IR)光谱仪的仪器设备。此外,衰减全反射(ATR)探头的出现使得采样更加容易,并且提高了样品间的重现性和用户间的光谱差异,从而可实现原位红外光谱学。这些创新使得在化学和药物分析中有了许多新的应用,例如在过程分析化学(PAC)中使用红外光谱学、在复杂基质配方中定量药物、分析蛋白质结合和功能,以及与红外显微镜结合,出现了红外成像技术。ATR-FTIR 仪器在法医学和对“白色粉末”事件的快速反应中的应用也有所讨论。本文简要概述了这一观点,旨在重新唤起并加强人们对红外光谱学的兴趣。