Chiral separation of the enantiomers of metoprolol and its metabolites by high performance liquid chromatography

被引:0
作者
Kyeong Ho Kim
Sang Duk Shin
Joo Hyun Lee
Sang Cheal Lee
Jong-Seong Kang
Woongchon Mar
Seon-Pyo Hong
Hyun Ju Kim
机构
[1] Kangwon National University,College of Pharmacy
[2] Chungnam National University,College of Pharmacy
[3] Seoul National University,Natural Products Research Institute
[4] Kyung Hee University,College of Pharmacy
来源
Archives of Pharmacal Research | 2000年 / 23卷
关键词
α-hydroxymetoprolol; -desmethylmetoprolol; Metoprolol acid; Chiral stationary phase; Enantiomeric resolution;
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摘要
(1′R, 2R)-, (1′R, 2S)-, (1′S, 2R)- and (1′S, 2S)-α-hydroxymetoprolol; (2R)- and (2S)-O-desmethylmetoprolol; and (2R)- and (2S)-metoprolol acid are major metabolites of (2R)-and (2S)-metoprolol, β-adrenergic antagonist. The focus of most chiral separation methods until now has been on determination of the enantiomeric parent drug. However, it is just as important to be able to follow the metabolism of the enantiomers and their possible chiral metabolites. Therefore, for the study of stereoselective metabolism and pharmacokinetic of metoprolol, the chiral separation of the enantiomers of metoprolol and its metabolites has been investigated using four chiral stationary phases, i.e., Chiralcel OD, Chiral-AGP, Cyclobond I and Sumichiral OA-4900 columns. Metoprolol acid was resolved only by Sumichiral OA-4900. Chiralcel OD provided the highest separation factor and resolution value for metoprolol and O-desmethylmetoprolol and partially resolved the four stereoisomers of α-hydroxymetoprolol. Diastereomeric α-hydroxymetoprolols were resolved using the coupled column chromatographic system of two chiral stationary phases, Sumichiral OA-4900 column and Chiralcel OD column.
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页码:230 / 236
页数:6
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  • [1] Balmer K.(1991)Liquid chromatographic separation of the enantiomers of metoprolol and its α-hydroxy metabolite on Chiralcel OD for determination in plasma and urine J. Chromatogr. 553 391-397
  • [2] Persson A.(1975)Metabolism of metoprolol [3H] in man, the dog and the rat Acta Pharmacol. Toxicol. 36 125-135
  • [3] Lagerstrom P. O.(1995)Chiral separations of β-blocking drug substances using chiral stationary phases J. Chromatogr. A 708 253-261
  • [4] Persson B. A.(1995)Optimization of the separation of enantiomers of basic drugs. Retention mechanisms and dynamic modification of the chiral bonding properties on an α J. Chromatogr. A 694 57-69
  • [5] Borg K. O.(1999)-acid glycoprotein column Arch. Pharm. Res. 22 614-618
  • [6] Carlsson E.(1992)Chiral purity test of metoprolol enantiomer after derivatization with (−)-menthyl chloroformate by reversed-phase high performance liquid chromatography Drug Metab. Dispos. 21 309-317
  • [7] Hoffmann K. J.(1992)Inhibition of the enantiselective oxidative metabolism of metoprolol by verapamil in human liver microsomes Biomed. Chromatogr. 6 99-105
  • [8] Jonsson T. E.(1995)Rapid chiral separation of metoprolol in plasma-Application to the pharmacokinetics/pharmaco-dynamics of metoprolol enantiomers in the conscious goat J. Chromatogr. B 668 67-75
  • [9] Thorin H.(1996)Determination of the enantiomers of metoprolol and its major acidic metabolite in human urine by high-performance liquid chromatography with fluorescence detection Instrum. Sci. Technol. 24 13-22
  • [10] Wallin B.(1990)The simultaneous identification of metoprolol and its major acidic and basic metabolites in human urine by gas chromatography-mass spectrometry Biochem. Pharmacol. 40 1637-1644