The applications of chiroptical spectroscopy for the determination and the detection of steroids and for the examination of their cyclodextrin-mediated enantioselective solubility
Szegvári, D.áv.
Acta Pharmaceutica Hungarica 78(1): 45-52
2008
ISSN/ISBN: 0001-6659 PMID: 18476368 Document Number: 621542
Chiroptical spectroscopy is one of the most developing areas of chiral analysis which role has been enhanced in recent years. In the thesis new applications of circular dichroism (CD) and optical rotatory dispersion (ORD) methods are presented via some examples. A quick and accurate CD spectroscopic method was developed for the simultaneous determination of ethisterone and its delta5-isomer (delta5-ethisterone). The method is based on the selective negative Cotton effect of the delta4-3-oxo group of ethisterone. The concentrations of the two isomers can be easily determined by ellipticity measurements at two different wavelengths without the application of any separation technique. CD detection for the separation of ethisterone isomers by high performance liquid chromatography (HPLC) is suitable even for the determination of the delta5-ethisterone, that contains isolated oxo groups. The separation of dehydroepiandrosterone (DHEA), dehydroepi-androsterone sulfate (DHEA-S) and related steroids was also elaborated by a CD detected HPLC technique. CD detection is a good tool for the determination of saturated ketones. Enantioselectivity was observed when the solubility of raceme norgestrel was examined in aqueous solutions of gamma-cyclodextrin and hydroxypropyl-gamma-cyclodextrin. A CD spectroscopic method, based on the measurement of g-factor was applied for the determination of the enantiomer ratio obtained. Levonorgestrel, the effective enantiomer was dissolved in greater extent using either cyclodextrins. The obtained solubility of norgestrel was greater using gamma-cyclodextrin, although the enantioselectivity was more significant when hydroxypropyl-gamma-cyclodextrin was applied. Phase-solubility examinations were appropriate for the verification of 1:1 stoichiometry and that the enantiomer ratios were independent of the cyclodextrin concentrations. A new calculation method was also elaborated, suitable for the direct determination of the concentrations of norgestrel enantiomers in aqueous cyclodextrin solutions.