Anal Chem. 2013 Feb 19;85(4):1980-4. doi: 10.1021/ac302852n. Epub 2013 Jan 31.
Terahertz (THz) spectroscopic imaging is a promising technique for distinguishing pharmaceuticals of similar molecular composition but differing crystal structures. Physicochemical properties, for instance bioavailability, are manipulated by altering a drug's crystal structure through methods such as cocrystallization. Cocrystals are molecular complexes having crystal structures different from those of their pure components. A technique for identifying the two-dimensional distribution of these alternate forms is required. Here we present the first demonstration of THz spectroscopic imaging of cocrystals. THz spectra of caffeine-oxalic acid cocrystal measured at low temperature exhibit sharp peaks, enabling us to visualize the cocrystal distribution in nonuniform tablets. The cocrystal distribution was clearly identified using THz spectroscopic data, and the cocrystal concentration was calculated with 0.3-1.3% w/w error from the known total concentration. From this result, THz spectroscopy allows quantitative chemical mapping of cocrystals and offers researchers and drug developers a new analytical tool.
太赫兹(THz)光谱成像是一种很有前途的技术,可以区分具有相似分子组成但晶体结构不同的药物。通过改变药物的晶体结构,例如共晶化,来操纵物理化学性质,例如生物利用度。共晶是具有不同于其纯成分的晶体结构的分子复合物。需要一种识别这些替代形式的二维分布的技术。在这里,我们首次展示了太赫兹光谱共晶成像的演示。在低温下测量的咖啡因-草酸共晶的太赫兹光谱显示出尖锐的峰值,使我们能够可视化非均匀片剂中的共晶分布。使用太赫兹光谱数据清楚地识别了共晶分布,并从已知的总浓度计算出共晶浓度,误差为 0.3-1.3%w/w。从这个结果来看,太赫兹光谱可以对共晶进行定量化学映射,并为研究人员和药物开发者提供了一种新的分析工具。