Fransson B, Wahlund K G, Johansson I M, Schill G
J Chromatogr. 1976 Sep 29;125(1):327-44. doi: 10.1016/s0021-9673(00)93829-9.
Liquid-liquid chromatographic systems based on ion-pair partition with silica microparticles as the support for the stationary phase have been used for the separation of anionic compounds of biochemical and pharmacological interest. A high separating efficiency can be obtained with both aqueous and organic mobile phases and the retention is easily regulated by the nature and the concentration of the quaternary ammonium counter ion, present in the aqueous phase. The influence of the composition of the liquid phases on the selectivity and separating efficiency has been studied, as well as equilibration methods and the stability of the systems. Examples are given of separations of sulphonamides, barbiturates, glucuronic and sulphuric acid conjugates of steroidal compounds and phenols glycine conjugates of carboxylic acids (hippuric, nicotinuric and salicyluric acid) and anionic metabolites of biogenic amines (indoleacetic, benzoic, mandelic and phenylacetic acid derivatives).
以硅胶微粒作为固定相载体的基于离子对分配的液-液色谱系统,已用于分离具有生化和药理意义的阴离子化合物。使用水性和有机流动相均可获得高分离效率,并且保留时间可通过水相中存在的季铵抗衡离子的性质和浓度轻松调节。研究了液相组成对选择性和分离效率的影响,以及平衡方法和系统的稳定性。给出了磺胺类、巴比妥类、甾体化合物的葡萄糖醛酸和硫酸共轭物、羧酸的酚甘氨酸共轭物(马尿酸、烟尿酸和水杨尿酸)以及生物胺的阴离子代谢物(吲哚乙酸、苯甲酸、扁桃酸和苯乙酸衍生物)的分离实例。