Direct enantiomeric high performance liquid chromatographic separation of propafenone and its major metabolite in serum on a cellulose tris-3,5-dimethylphenyl carbamate chiral stationary phase
Author:
Publisher
Wiley
Subject
Clinical Biochemistry,Drug Discovery,Pharmacology,Molecular Biology,General Medicine,Biochemistry,Analytical Chemistry
Reference19 articles.
1. Direct high-performance liquid chromatographic separation of penbutolol enantiomers on a cellulose tris-3,5-dimethylphenyl carbamate chiral stationary phase
2. Direct separation and optimization of timolol enantiomers on a cellulose tris-3,5-dimethylphenylcarbamate high-performance liquid chromatographic chiral stationary phase
3. Direct Hplc Separation and Optimization of Celiprolol Enantiomers
4. Direct HPLC Separation of Carazolol Enantiomers on a Cellulose Tris-3, 5-Dimethylphenyl Carbamate Column
5. Propafenone Interacts Stereoselectively with β1 and β2-Adrenergic Receptors
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1. Novel Copper Oxide Nanostructure Propafenone Voltammetric Sensor;Arabian Journal for Science and Engineering;2023-02-13
2. A Sensitive and Rapid LC–MS-MS Method for Simultaneous Determination of Propafenone and Its Active Metabolite 5-Hydroxypropafenone in Human Plasma and Its Application in a Pharmacokinetic Study;Journal of Chromatographic Science;2017-07-25
3. Inhibition of Cardiac Ca2+Release Channels (RyR2) Determines Efficacy of Class I Antiarrhythmic Drugs in Catecholaminergic Polymorphic Ventricular Tachycardia;Circulation: Arrhythmia and Electrophysiology;2011-04
4. Enantioselective analysis of R- and S-propafenone in plasma by HPLC applying column switching and liquid–liquid extraction;Journal of Chromatography B;2009-11
5. Validated capillary electrophoresis assay for the simultaneous enantioselective determination of propafenone and its major metabolites in biological samples;ELECTROPHORESIS;2006-04
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