Terekhova Irina V, Scriba Gerhard K E
Institute of Solution Chemistry of Russian Academy of Sciences, 1 Akademicheskaya Str., 153045 Ivanovo, Russia.
J Pharm Biomed Anal. 2007 Nov 30;45(4):688-93. doi: 10.1016/j.jpba.2007.02.003. Epub 2007 Feb 12.
The capillary electrophoretic separation of the pyridine derivatives pyridoxine, pyridoxal, nicotinamide, nicotinic acid and isonicotinic acid in phosphate buffer using cyclodextrins as buffer additives was studied at pH 2.0 and 3.5. Superior separation was achieved at pH 2.0. Addition of alpha- and beta-cyclodextrin and the respective 2-hydroxypropyl derivatives as well as carboxymethyl-alpha-cyclodextrin to the running buffer did not significantly improve the resolution of the compounds. The interactions of alpha- and beta-cyclodextrin as well as their hydroxypropyl derivatives with the pyridine derivatives were investigated by capillary electrophoresis at pH 2.0. No complex formation was observed between the cyclodextrins and pyridoxine, pyridoxal and nicotinamide. alpha-Cyclodextrin and 2-hydroxypropyl-alpha-cyclodextrin form weak 1:1 complexes with nicotinic and isonicotinic acids in aqueous media at 298.15K, while beta-cyclodextrin and its hydroxypropyl derivative did not form complexes. The apparent stability constants (K) of the complexes calculated from the electrophoretic mobility data ranged between 3 and 33 kg/mol. The negative values of enthalpy and entropy of complex formation obtained from the graphical plot of the van't Hoff equation indicate an important role of van der Waals and electrostatic interactions in the binding of nicotinic acid with alpha-cyclodextrin.
研究了在pH 2.0和3.5条件下,以环糊精作为缓冲添加剂,在磷酸盐缓冲液中对吡啶衍生物吡哆醇、吡哆醛、烟酰胺、烟酸和异烟酸进行毛细管电泳分离。在pH 2.0时实现了更好的分离效果。向运行缓冲液中添加α-环糊精、β-环糊精及其各自的2-羟丙基衍生物以及羧甲基-α-环糊精,并未显著提高这些化合物的分离度。在pH 2.0条件下,通过毛细管电泳研究了α-环糊精、β-环糊精及其羟丙基衍生物与吡啶衍生物之间的相互作用。未观察到环糊精与吡哆醇、吡哆醛和烟酰胺之间形成络合物。在298.15K的水性介质中,α-环糊精和2-羟丙基-α-环糊精与烟酸和异烟酸形成弱的1:1络合物,而β-环糊精及其羟丙基衍生物未形成络合物。根据电泳迁移率数据计算得到的络合物表观稳定常数(K)在3至33 kg/mol之间。从范特霍夫方程的图形绘制中获得的络合物形成焓和熵的负值表明,范德华力和静电相互作用在烟酸与α-环糊精的结合中起重要作用。