Skanchy D J, Wilson R, Poh T, Xie G H, Demarest C W, Stobaugh J F
Department of Pharmaceutical Chemistry, Center of Bioanalytical Research, University of Kansas, Lawrence 66047, USA.
Electrophoresis. 1997 Jun;18(6):985-95. doi: 10.1002/elps.1150180621.
The separation of enantiomerically and diastereomerically related stereoisomers of acylated Asp-Phe dipeptides was explored using capillary electrophoresis (CE). This series of dipeptides included the alpha-L,L parent compound and the three other potential Asp containing stereoisomers (alpha-D,D, alpha-L,D, and alpha-D,L), as well the four possible isoAsp containing stereoisomers (beta-L,L, beta-D,D, beta-L,D and beta-D,L). The separation of these substances was explored using both neutral and charged cyclodextrins as the stereoisomer selector added to the running electrolyte. The major experimental parameters investigated included pH, the cyclodextrin type, and the cyclodextrin concentration. Due to differences in the pKa values of the carboxylic acid groups, adjustment of the separation buffer to between pH 3.0 and 4.0 provided for sufficient electrophoretic mobility differences to result in excellent separations of the diastereomerically related peptides in this pH region. The resolution of the enantiomerically related peptide stereoisomers was accomplished using low concentrations (1 mM) of the anionic cyclodextrin derivative, sulfobutylether-beta-cyclodextrin (SBE-beta-CD). This negatively charged cyclodextrin was found to be superior for the resolution of the enantiomerically related peptides as compared to native beta-cyclodextrin or the neutral derivatives, dimethyl beta-cyclodextrin and hydroxypropyl beta-cyclodextrin. An alternative approach using anionic or neutral surfactants in conjunction with the SBE-beta-CDs was also explored and found to be successful but problematic.
利用毛细管电泳(CE)研究了酰化天冬氨酰-苯丙氨酸二肽对映体和非对映体相关立体异构体的分离。这一系列二肽包括α-L,L母体化合物以及其他三种可能含天冬氨酸的立体异构体(α-D,D、α-L,D和α-D,L),还有四种可能含异天冬氨酸的立体异构体(β-L,L、β-D,D、β-L,D和β-D,L)。使用中性和带电环糊精作为立体异构体选择剂添加到运行电解质中,对这些物质进行了分离研究。研究的主要实验参数包括pH值、环糊精类型和环糊精浓度。由于羧酸基团pKa值的差异,将分离缓冲液的pH值调节到3.0至4.0之间,可提供足够的电泳迁移率差异,从而在该pH区域内实现非对映体相关肽的出色分离。使用低浓度(1 mM)的阴离子环糊精衍生物磺丁基醚-β-环糊精(SBE-β-CD)实现了对映体相关肽立体异构体的拆分。与天然β-环糊精或中性衍生物二甲基-β-环糊精和羟丙基-β-环糊精相比,发现这种带负电荷的环糊精在拆分对映体相关肽方面更具优势。还探索了一种将阴离子或中性表面活性剂与SBE-β-CD结合使用的替代方法,发现该方法是成功的,但存在问题。