Wedig M, Holzgrabe U
Pharmaceutical Institute, University of Würzburg, Germany.
Electrophoresis. 1999 Sep;20(13):2698-704. doi: 10.1002/(SICI)1522-2683(19990901)20:13<2698::AID-ELPS2698>3.0.CO;2-N.
Beta-cyclodextrin (beta-CD), heptakis(2,3-di-O-acetyl)beta-cyclodextrin (Diac-beta-CD) and heptakis (2,3-di-O-acetyl-6-sulfato)beta-cyclodextrin (HDAS-beta-CD) were tested for their ability to discriminate the enantiomers of ephedrine, pseudoephedrine, norephedrine and methylephedrine. Using capillary electrophoresis (CE) under optimized conditions, with the exception of norephedrine in presence of beta-CD, all racemates could be resolved. Utilizing Job's plot by means of UV spectroscopy revealed 1:1 complexes formed with beta-CD and Diac-beta-CD. HDAS-beta-CD gave curved plots indicating mixed stoichiometry. Inspection of the cyclodextrin-induced chemical shifts (CICS) of both the ligands and the CDs showed that the ephedrine sits deeply in the cavity of beta-CD and HDAS-beta-CD. In the case of Diac-beta-CD, the ephedrine is located closely to the wider rim of the CD cavity. In conclusion, comparing the pattern of CICS of the various CD derivatives clearly indicates the differences in the complex geometry.
测试了β-环糊精(β-CD)、七(2,3-二-O-乙酰基)β-环糊精(二乙酰基-β-CD)和七(2,3-二-O-乙酰基-6-硫酸酯)β-环糊精(HDAS-β-CD)区分麻黄碱、伪麻黄碱、去甲麻黄碱和甲基麻黄碱对映体的能力。在优化条件下使用毛细管电泳(CE),除了在β-CD存在下去甲麻黄碱外,所有外消旋体都能得到分离。通过紫外光谱法利用乔布氏图揭示了与β-CD和二乙酰基-β-CD形成了1:1的配合物。HDAS-β-CD给出了弯曲的图,表明化学计量比混合。对配体和环糊精的环糊精诱导化学位移(CICS)的检查表明,麻黄碱深深地位于β-CD和HDAS-β-CD的腔内。在二乙酰基-β-CD的情况下,麻黄碱位于靠近环糊精腔较宽边缘的位置。总之,比较各种环糊精衍生物的CICS模式清楚地表明了配合物几何结构的差异。