Liquid chromatography–tandem mass spectrometry for determination of fingolimod and its active metabolite fingolimod phosphate in whole blood of patients with multiple sclerosis

Author:

Pesakova Veronika12ORCID,Brozmanova Hana12,Sistik Pavel12,Kusnirikova Zuzana13,Kacirova Ivana12,Grundmann Milan12

Affiliation:

1. Department of Clinical Pharmacology, Faculty of Medicine University of Ostrava Ostrava Czech Republic

2. Department of Clinical Pharmacology, Institute of Laboratory Medicine University Hospital Ostrava Ostrava Czech Republic

3. Department of Children Neurology, Department of Neurology University Hospital Ostrava Ostrava Czech Republic

Abstract

AbstractFingolimod is an oral drug for the escalation of treatment of relapsing–remitting multiple sclerosis in patients with persistent disease activity on first‐line drugs or in patients with rapidly progressive severe relapsing–remitting multiple sclerosis. An ultra‐high‐performance liquid chromatography–tandem mass spectrometry method for determining the concentrations of fingolimod and its active metabolite fingolimod phosphate in whole blood has been developed and validated. The advantages of this method are the easy, fast and cheap sample preparation using protein precipitation from blood with a mixture of acetonitrile–methanol (40:60, v/v). Chromatographic separation was performed on a ultra‐high performance liquid chromatography BEH C18 1.7 μm (100 × 2.1 mm) column. Two modes of ionization, electrospray ionization and atmospheric pressure chemical ionization, were tested and compared. For validation, the electrospray ionization mode was chosen. As internal standard, isotopically labeled fingolimod‐D4 was used to quantify the analytes. The method was validated according to the rules of the European Medicines Agency. The coefficients of variation for fingolimod were in the range of 1.13–11.88%, and the recovery was 98.80–106.00%. The coefficients of variation for fingolimod phosphate were in the range of 2.73–9.31%, and the recovery was 90.08–107.00%. The method is quite easy and fast and can be used for routine analysis.

Publisher

Wiley

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