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新型单一对映体负电荷β-环糊精衍生物作为毛细管电泳中的手性选择剂。

New single isomer negatively charged β-cyclodextrin derivatives as chiral selectors in capillary electrophoresis.

机构信息

Department of Pharmaceutical Chemistry, Faculty of Pharmaceutical Sciences, Prince of Songkla University, Songkhla, Thailand.

出版信息

Electrophoresis. 2013 Apr;34(8):1232-40. doi: 10.1002/elps.201200591. Epub 2013 Mar 22.

DOI:10.1002/elps.201200591
PMID:23404796
Abstract

To improve resolution power of chiral selector and enantiomeric peak efficiency in CE, single isomer negatively charged β-CD derivatives, mono(6-deoxy-6-sulfoethylthio)-β-CD (SET-β-CD) bearing one negative charge and mono[6-deoxy-6-(6-sulfooxy-5,5-bis-sulfooxymethyl)hexylthio]-β-CD (SMHT-β-CD) carrying three negative charges, were synthesized. The structure of these two β-CD derivatives was confirmed by (1)H NMR and MS. SET-β-CD and SMHT-β-CD successfully resolved the enantiomers of several basic model compounds. SMHT-β-CD provided for a significantly greater enantioseparation than SET-β-CD at lower concentrations. This appears to be due to the higher binding affinity of SMHT-β-CD to the model compounds and the wider separation window resulting from an increased countercurrent mobility of the selector. Overall, the new chiral selectors provided enantioseparations with high peak efficiency while avoiding peak distortion due to polydispersive and electrodispersive effects. The information obtained from an apparent binding constant study suggested that the enantioseparation of the model compounds followed the predictions of charged resolving agent migration model and that the observed degree of enantioseparation difference were due to the magnitude of differences in both enantiomer-chiral selector binding affinities (ΔK) and the mobilities of the complexed enantiomers (Δμ(c)).

摘要

为了提高手性选择剂的分辨能力和 CE 中的对映体峰效率,合成了带一个负电荷的单一对映体负电荷 β-CD 衍生物,单(6-脱氧-6-磺基乙基硫代)-β-CD(SET-β-CD)和带有三个负电荷的单[6-脱氧-6-(6-磺基氧基-5,5-双磺基氧甲基)己基硫代]-β-CD(SMHT-β-CD)。通过(1)H NMR 和 MS 确认了这两种 β-CD 衍生物的结构。SET-β-CD 和 SMHT-β-CD 成功地拆分了几种碱性模型化合物的对映体。在较低浓度下,SMHT-β-CD 比 SET-β-CD 提供了更大的对映体分离度。这似乎是由于 SMHT-β-CD 与模型化合物的更高结合亲和力以及由于选择剂的反向迁移率增加而导致的更宽的分离窗口。总体而言,新型手性选择剂在避免由于多分散性和电分散性效应导致的峰变形的同时,提供了具有高峰效率的对映体分离。从表观结合常数研究中获得的信息表明,模型化合物的对映体分离符合带电荷的解析剂迁移模型的预测,并且观察到的对映体分离差异程度归因于对映体与手性选择剂结合亲和力(ΔK)和复合物对映体迁移率(Δμ(c))的差异程度。

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