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Multidrug analysis of pharmaceutical and urine matrices by on‐line coupled capillary electrophoresis and triple quadrupole mass spectrometry
Author(s) -
Maráková Katarína,
Piešt'anský Juraj,
Veizerová Lucia,
Galba Jaroslav,
Dokupilová Svetlana,
Havránek Emil,
Mikuš Peter
Publication year - 2013
Publication title -
journal of separation science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.72
H-Index - 102
eISSN - 1615-9314
pISSN - 1615-9306
DOI - 10.1002/jssc.201200980
Subject(s) - chromatography , capillary electrophoresis , chemistry , triple quadrupole mass spectrometer , mass spectrometry , analyte , pharmaceutical formulation , analytical chemistry (journal) , selected reaction monitoring , tandem mass spectrometry
The present work illustrates potentialities of CE hyphenated with MS/MS for the simultaneous determination and identification of a mixture of simultaneously acting drugs in pharmaceutical and biological matrices. Here, the hyphenation was provided by ESI interface, while the MS/MS technique was based on the triple quadrupole configuration. Three drugs, namely pheniramine, phenylephrine, and paracetamol were determined and identified with high reliability due to their characterization in three different dimensions, i.e. electrophoresis and MS/MS, that prevented practically any interference. Appropriately selected transitions of the analytes (parent ion‐quantifier product ion‐qualifier product ion) provided their selective determination at maximum S/N. The proposed CE‐MS/MS method was validated (LOD/LOQ, linearity, precision, recovery, accuracy) and applied for (i) the multidrug composition pharmaceuticals, namely Theraflu®, and (ii) human urine taken after per‐oral administration of the same pharmaceutical preparation. The method was applied also for the investigation of potential weak associates of the drugs and monitoring of predicted (bio)degradation products of the drugs. Successful validation and application of the proposed method suggest its routine use in highly effective and reliable advanced drug control and biomedical research.