BrightSpec, Inc., 770 Harris Street Suite 104b, Charlottesville, VA 22903, USA.
BrightSpec, Inc., 770 Harris Street Suite 104b, Charlottesville, VA 22903, USA.
J Pharm Biomed Anal. 2020 Sep 10;189:113474. doi: 10.1016/j.jpba.2020.113474. Epub 2020 Jul 17.
We demonstrate the application of molecular rotational resonance (MRR) spectroscopy to quantify regioisomeric, dehalogenated, and enantiomeric impurities in two raw materials used in the synthesis of a HIV integrase inhibitor, cabotegravir. Characterization of these raw material impurities is important due to their ability to introduce structurally similar impurities into the final drug product. MRR, due to its high resolution and selectivity to small changes in molecular structure, can perform these measurements rapidly and without the need for developing a chromatographic separation method. For 2,4-difluorobenzylamine, four impurities were quantified (benzylamine, 2-fluorobenzylamine, 4-fluorobenzylamine, and 2,6-difluorobenzylamine), while for (S)-alaninol (2-amino-1-propanol), its enantiomer, (R)-alaninol, was measured using a chiral tagging method. For both samples, the resonance frequencies of each compound of interest were first determined using a broadband spectrometer before evaluating analytical performance metrics on a faster targeted spectrometer. For the fluorobenzylamines, quantitative performance was demonstrated over the range 0.05-5 % (v/v) for each impurity, while for alaninol, measurements were performed over the range of 70-99 % enantiomeric excess. This study suggests that MRR can be useful for validating the purity of pharmaceutical raw materials.
我们展示了分子旋转共振(MRR)光谱在定量分析两种用于合成 HIV 整合酶抑制剂卡博特韦的原料药中区域异构体、脱卤和对映异构体杂质的应用。由于这些原料杂质能够在最终药物产品中引入结构相似的杂质,因此对它们进行特征描述非常重要。MRR 由于其对分子结构微小变化的高分辨率和选择性,能够快速进行这些测量,而无需开发色谱分离方法。对于 2,4-二氟苯甲胺,定量了四种杂质(苄胺、2-氟苄胺、4-氟苄胺和 2,6-二氟苄胺),而对于 (S)-丙氨酸醇(2-氨基-1-丙醇),则使用手性标记法测量其对映异构体 (R)-丙氨酸醇。对于这两个样品,首先使用宽带光谱仪确定每个感兴趣化合物的共振频率,然后在更快的靶向光谱仪上评估分析性能指标。对于氟苯甲胺,在每个杂质的 0.05-5%(v/v)范围内证明了定量性能,而对于丙氨酸醇,则在 70-99%对映体过量的范围内进行了测量。这项研究表明,MRR 可用于验证药物原料的纯度。