Lin Ching-Erh, Lin Sheng-Li, Cheng Hsu-Tun, Fang I-Ju, Kuo Chia-Ming, Liu Yu-Chih
Department of Chemistry, National Taiwan University, Taipei, Taiwan.
Electrophoresis. 2005 Nov;26(21):4187-96. doi: 10.1002/elps.200500294.
Migration behavior and enantioseparation of racemic hydrobenzoin and structurally related compounds, including benzoin and benzoin methyl ether, in CZE with a dual CD system consisting of heptakis-(2,3-dihydroxy-6-O-sulfo)-beta-CD (SI-S-beta-CD) and beta-CD as chiral selectors in the presence and absence of borate complexation at pH 9.0 were investigated. The results indicate that enantioseparation of hydrobenzoin is mainly governed by CD complexation of hydrobenzoin-borate complexes with SI-S-beta-CD when SI-S-beta-CD concentration is relatively high. Whereas CD complexation of hydrobenzoin-borate complexes with beta-CD plays a significant role in enantioseparation when SI-S-beta-CD concentration is comparatively low. The (S,S)-enantiomer of the hydrobenzoin-borate complex was found to interact more strongly than the corresponding (R,R)-enantiomer with both SI-S-beta-CD and beta-CD. These two types of CD show the same chiral recognition pattern, but they exhibit opposite effects on the mobility of the enantiomers of hydrobenzoin-borate complexes. Enantiomer migration reversal of hydrobenzoin occurred in the presence of borate complexation when varying the concentration of beta-CD, while keeping SI-S-beta-CD at a relatively low concentration. Binding constants of the enantiomers of benzoin-related compounds to beta-CD and those of hydrobenzoin-borate complexes to SI-beta-CD were evaluated; the mobility contributions of all complex species to the effective mobility of the enantiomers of hydrobenzoin as a function of beta-CD concentration in a borate buffer were analyzed. In addition, comparative studies on the enantioseparation of benzoin-related compounds with SI-S-beta-CD and with randomly sulfate-substituted beta-CD were made.
研究了外消旋氢化苯偶姻及其结构相关化合物(包括苯偶姻和苯偶姻甲醚)在毛细管区带电泳(CZE)中的迁移行为和对映体拆分。该CZE采用由七(2,3 - 二羟基 - 6 - O - 磺基) - β - 环糊精(SI - S - β - CD)和β - 环糊精组成的双CD系统作为手性选择剂,在pH 9.0且存在和不存在硼酸盐络合的情况下进行。结果表明,当SI - S - β - CD浓度相对较高时,氢化苯偶姻的对映体拆分主要由氢化苯偶姻 - 硼酸盐络合物与SI - S - β - CD的CD络合作用控制。而当SI - S - β - CD浓度相对较低时,氢化苯偶姻 - 硼酸盐络合物与β - 环糊精的CD络合作用在对映体拆分中起重要作用。发现氢化苯偶姻 - 硼酸盐络合物的(S,S) - 对映体与SI - S - β - CD和β - 环糊精的相互作用比相应的(R,R) - 对映体更强。这两种类型的CD显示出相同的手性识别模式,但它们对氢化苯偶姻 - 硼酸盐络合物对映体的迁移率表现出相反的影响。当改变β - 环糊精的浓度,同时保持SI - S - β - CD处于相对较低的浓度时,在存在硼酸盐络合的情况下发生了氢化苯偶姻对映体迁移反转。评估了苯偶姻相关化合物对映体与β - 环糊精以及氢化苯偶姻 - 硼酸盐络合物与SI - β - CD的结合常数;分析了在硼酸盐缓冲液中所有络合物物种对氢化苯偶姻对映体有效迁移率的迁移贡献作为β - 环糊精浓度的函数。此外,还对苯偶姻相关化合物与SI - S - β - CD以及与随机硫酸化取代的β - 环糊精的对映体拆分进行了比较研究。