Study on the chiral recognition of the enantiomers of ephedrine derivatives with neutral and sulfated heptakis(2,3-O-diacetyl)-beta-cyclodextrins using capillary electrophoresis, UV, nuclear magnetic resonance spectroscopy and mass spectrometry

Citation
C. Hellriegel et al., Study on the chiral recognition of the enantiomers of ephedrine derivatives with neutral and sulfated heptakis(2,3-O-diacetyl)-beta-cyclodextrins using capillary electrophoresis, UV, nuclear magnetic resonance spectroscopy and mass spectrometry, J CHROMAT A, 914(1-2), 2001, pp. 315-324
Citations number
22
Categorie Soggetti
Chemistry & Analysis","Spectroscopy /Instrumentation/Analytical Sciences
Journal title
Volume
914
Issue
1-2
Year of publication
2001
Pages
315 - 324
Database
ISI
SICI code
Abstract
The enantiomers of methylephedrine, pseudoephedrine and ephedrine showed a different migration behavior in capillary electrophoresis in the presence o f P-cyclodextrin (P-CD), heptakis(2,3-O-diacetyl)-beta -cyclodextrin and he ptakis(2,3-O-diacetyl-6-sulfato)-beta -cyclodextrin (HDAS). Utilizing W, MS and NMR spectroscopy, in particular rotating frame Overhauser experiments, an attempt was made to elucidate the chiral recognition mechanism. In the case of the neutral CDs 1:1 complexes were formed with ephedrine and methyl ephedrine characterized by the inclusion of the phenyl ring in the cavity a nd the side chain pointing out of the wider rim. In contrast, manifold comp lexes were formed with HDAS, which on average are characterized by an upsid e down inclusion of the phenyl ring in the cavity and the side chain pointi ng out of the narrow rim. This complex geometry is likely be stabilized by an ion-ion interaction between the positively charged nitrogens of the ephe drine derivatives and the negative charges of HDAS. In addition, an attachm ent of the ligand to the outside of HDAS and other complex stoichiometries are also possible. (C) 2001 Elsevier Science B.V. All rights reserved.