Zhu W, Vigh G
Department of Chemistry, Texas A&M University, College Station 77842-3012, USA.
Anal Chem. 2000 Jan 15;72(2):310-7. doi: 10.1021/ac991039t.
The first member of the single-isomer, sulfated gamma-cyclodextrin family, the sodium salt of octakis(2,3-diacetyl-6-sulfato)-gamma-cyclodextrin (ODAS-gamma CD) has been synthesized, analytically characterized, and used to separate, by capillary electrophoresis, a variety of neutral, acidic, basic, and amphoteric enantiomers in low pH background electrolytes. The anionic effective mobilities of the neutral and anionic analytes were found to increase with the concentration of ODAS-gamma CD. For weakly binding cationic analytes, the effective mobilities went from cationic high values, through zero, to increasingly larger anionic values as the concentration of ODAS-gamma CD was increased. For the strongly complexing cationic analytes, the effective mobilities became anionic even at very low ODAS-gamma CD concentrations and became smaller as the ionic strength of the background electrolyte increased with the increasing ODAS-gamma CD concentration. Separation selectivity followed the predictions of the charged resolving agent migration model: for neutral analytes it decreased as the concentration of ODAS-gamma CD was increased. For cationic analytes, selectivities were found to increase as the cationic effective mobilities approached zero, then decreased as the concentration of ODAS-gamma CD was increased further. The extent of peak resolution that could be realized with ODAS-gamma CD strongly depended on the magnitude of separation selectivity and the normalized electroosmotic flow mobility. ODAS-gamma CD proved to be a broadly applicable chiral resolving agent.
单异构体硫酸化γ-环糊精家族的首个成员,八(2,3-二乙酰基-6-硫酸根)-γ-环糊精钠盐(ODAS-γ-CD)已被合成、进行了分析表征,并用于在低pH背景电解质中通过毛细管电泳分离多种中性、酸性、碱性和两性对映体。发现中性和阴离子分析物的阴离子有效迁移率随ODAS-γ-CD浓度的增加而增加。对于弱结合阳离子分析物,随着ODAS-γ-CD浓度的增加,有效迁移率从阳离子高值,经过零,变为越来越大的阴离子值。对于强络合阳离子分析物,即使在非常低的ODAS-γ-CD浓度下,有效迁移率也变为阴离子,并且随着背景电解质离子强度随着ODAS-γ-CD浓度的增加而增加,有效迁移率变小。分离选择性遵循带电拆分剂迁移模型的预测:对于中性分析物,随着ODAS-γ-CD浓度的增加而降低。对于阳离子分析物,发现选择性随着阳离子有效迁移率接近零而增加,然后随着ODAS-γ-CD浓度进一步增加而降低。使用ODAS-γ-CD能够实现的峰分辨率程度在很大程度上取决于分离选择性的大小和归一化电渗流迁移率。ODAS-γ-CD被证明是一种广泛适用的手性拆分剂。