LC–MS/MS approaches for the assay of bis-quaternary pyridinium oximes used as AChE reactivators in biological matrices

Author:

Voicu Victor12,Albu Florin3,Tache Florentin4,Musilek Kamil5,Kuca Kamil56,Medvedovici Andrei47

Affiliation:

1. University of Medicine & Pharmacy Carol Davila, Faculty of Medicine, Department of Clinical Pharmacology, Toxicology & Psychopharmacology, 8 Scoala Floreasca Street, Bucharest, 011643, Romania

2. Romanian Army Center for Medical Research, 37 C.A. Rosetti Street, Bucharest, 020012, Romania

3. Bioanalytical Laboratory, SC Labormed Pharma SA, 44B Th. Pallady Blvd., Bucharest, 032266, Romania

4. University of Bucharest, Faculty of Chemistry, Department of Analytical Chemistry, 90 Panduri Avenue, Bucharest, 050663, Romania

5. University of Hradec Kralove, Faculty of Science, Department of Chemistry, Rokitanskeho 62, 50003 Hradec Kralove, Czech Republic

6. Center of Advanced Studies, Faculty of Military Health Sciences, University of Defense, Trebesska 1575, 500 01 Hradec Kralove, Czech Republic

7. Bioanalytical Laboratory, SC Labormed Pharma SA, 44B Th. Pallady Blvd., Bucharest, 032266, Romania.

Abstract

Background: Extreme efforts are made for the structural diversification of oximes used as AChE reactivators. Co-administration of different oximes should also be considered as a solution in therapy. Consequently, development of selective assays of oximes in biological matrices is of major importance. Results: Three chromatographic separation mechanisms were evaluated: hydrophilic-interaction LC; mixed reversed-phase/cation exchange (DUET); and reversed-phase ion pairing based on per-fluorinated agents. MS was used to identify and quantify oximes. Alternative preparation of whole blood and plasma samples were used based on protein precipitation through addition of acetonitrile or ionic liquids. Quality characteristics of the proposed analytical approaches are discussed. Conclusion: The reversed-phase ion pairing based on per-fluorinated agents chromatographic separation mechanism and positive ESI-MS/MS detection produced the best results for the assay of bis-quaternary pyridinium oximes. LLOQ in the tenths of nanogram per milliliter range are achievable.

Publisher

Future Science Ltd

Subject

Medical Laboratory Technology,Clinical Biochemistry,General Pharmacology, Toxicology and Pharmaceutics,General Medicine,Analytical Chemistry

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