Terahertz Technology Innovation Research Institute, Shanghai Key Lab. of Modern Optical System, Terahertz Science Cooperative Innovation Center, University of Shanghai for Science and Technology, Shanghai, P. R. China.
Shanghai Center for Drug Evaluation and Inspection, P. R. China.
Analyst. 2021 Jun 14;146(12):3888-3898. doi: 10.1039/d1an00500f.
Chiral drugs are drugs with chiral or asymmetric centres in their molecular structure. Different enantiomers of the same chiral drug have noticeably different pharmacological activities and pharmacokinetic properties. However, its distinction has been perplexing scholars for many years in the qualitative and quantitative detection of antagonistic drugs. Conventional detection methods, such as polarimetry, circular dichroism, and high-performance liquid chromatography, are time consuming, cause sample loss and have cumbersome operations, and they can be applied only to the sampling method. In this paper, we propose a fast, accurate, qualitative and quantitative method for the study of chiral drugs based on linearly polarized terahertz (THz) spectroscopy and imaging technology. Taking ibuprofen as an example, based on the THz absorption spectra of the enantiomers RS-ibuprofen, (R)-(-)-ibuprofen, and (S)-(+)-ibuprofen, their characteristic peak frequencies, peak amplitude differences and peak area differences were extracted to qualitatively and quantitatively distinguish and identify the three substances. THz spectral imaging provides more intuitive results than those obtained from previous methods. In quantitative identification, the stability and detection accuracy of THz spectroscopy are much greater than those of Raman spectroscopy (88.8-99.8% vs. 21.42-94.62%, respectively). The qualitative recognition accuracy was 100%, and the quantitative recognition standard deviation was less than 0.01, and it is also a non-destructive testing method. Furthermore, the above method combined with principal component analysis (PCA) and the support vector machine (SVM) neural network classification algorithm was applied to the analysis of other chiral drugs. These results are significant for the rapid, accurate and non-destructive identification of chiral drugs.
手性药物是指其分子结构中具有手性或不对称中心的药物。同一手性药物的不同对映异构体具有明显不同的药理活性和药代动力学特性。然而,在拮抗药物的定性和定量检测中,其区分多年来一直困扰着学者。传统的检测方法,如旋光法、圆二色法和高效液相色谱法,耗时耗力,会导致样品损失,操作繁琐,并且只能应用于采样方法。在本文中,我们提出了一种基于线偏振太赫兹(THz)光谱和成像技术的快速、准确、定性和定量研究手性药物的方法。以布洛芬为例,基于对映异构体 RS-布洛芬、(R)-(-)-布洛芬和(S)-(+)-布洛芬的 THz 吸收光谱,提取其特征峰频率、峰幅差和峰面积差,对手性药物进行定性和定量区分和识别。THz 光谱成像提供了比以往方法更直观的结果。在定量识别中,THz 光谱的稳定性和检测精度远大于拉曼光谱(分别为 88.8-99.8%和 21.42-94.62%)。定性识别准确率为 100%,定量识别标准偏差小于 0.01,也是一种无损检测方法。此外,上述方法结合主成分分析(PCA)和支持向量机(SVM)神经网络分类算法,应用于其他手性药物的分析。这些结果对于快速、准确、无损识别手性药物具有重要意义。