Gholami Morteza, Ghassempour Alireza, Alizadeh Reza, Aboul-Enein Hassan Y
Department of Phytochemistry, Medicinal Plants and Drugs Research Institute, Shahid Beheshti University, Tehran, Iran.
J Sep Sci. 2009 Apr;32(7):918-22. doi: 10.1002/jssc.200800531.
Vancomycin crystalline degradation products (CDPs) have been introduced as one of the newest and most interesting derivatives of vancomycin for enantiomer separation of a wide variety of chiral compounds. In this attempt, a chiral stationary phase (CSP) has been prepared using diol silica gel based on vancomycin CDPs which led to a new chiral selector with new functionality of functional groups on a microcolumn LC. Different kinds of mobile phases were examined to realize the behavior of the chiral selector in separation of atropine, fluoxetine, amlodipine, mandelic acid, alanine, and phenylalanine which were separated successfully on this column. Good results were obtained by using a polar mobile phase containing water, methanol, and acid additives for separation of chiral acidic compounds and amino acid samples. Considerable results were obtained for analysis of basic compounds by using polar organic mobile phase (POP) containing methanol, acid and base additives. These results can be associated with the presence of the carboxylic acid groups present in new CSP by using a diol silica gel.
万古霉素晶体降解产物(CDPs)已被引入,作为万古霉素最新且最有趣的衍生物之一,用于多种手性化合物的对映体分离。在此次尝试中,基于万古霉素CDPs制备了一种二醇硅胶手性固定相(CSP),这在微柱液相色谱上产生了一种具有新官能团新功能的新型手性选择剂。研究了不同种类的流动相,以了解该手性选择剂在分离阿托品、氟西汀、氨氯地平、扁桃酸、丙氨酸和苯丙氨酸时的行为,这些物质在此柱上成功实现了分离。通过使用含有水、甲醇和酸添加剂的极性流动相分离手性酸性化合物和氨基酸样品,获得了良好的结果。通过使用含有甲醇、酸和碱添加剂的极性有机流动相(POP)分析碱性化合物,也取得了可观的结果。这些结果可能与使用二醇硅胶的新型CSP中存在的羧酸基团有关。