Development and validation of a chiral LC-MS method for the enantiomeric resolution of (+) and (-)-medetomidine in equine plasma by using polysaccharide-based chiral stationary phases.
Abdul Khader Karakka KalJahfar NalakathTajudheen Kunhamu KarattZubair PerwadBinoy MathewMichael SubhaharPublished in: Chirality (2020)
The detection and separation of medetomidine enantiomers from the complex biological matrices poses a great analytical challenge, especially in the field of forensic toxicology and pharmacology. Couple of researchers reported resolution of medetomidine using protein-based chiral columns, but the reported method is quiet challenging and tedious to be employed for routine analysis. This research paper reported a method that enables the enantio-separation of medetomidine by using polysaccharide cellulose chiral column. The use of chiralcel OJ-3R column was found to have the highest potential for successful chiral resolution. Ammonium hydrogen carbonate was the ideal buffer salt for chiral liquid chromatography (LC) with electrospray ionization (ESI)+ mass spectrometry (MS) detection for the successful separation and detection of racemic compound. The method was linear over the range of 0 to 20 ng/mL in equine plasma and the inter-day precisions of levomedetomidine, dexmedetomidine were 1.36% and 1.89%, respectively. The accuracy of levomedetomidine was in the range of 99.25% to 101.57% and that for dexmedetomidine was 99.17% to 100.99%. The limits of quantification for both isomers were 0.2 ng/mL. Recovery and matrix effect on the analytes were also evaluated. Under the optimized conditions, the validated method can be adapted for the identification and resolution of the medetomidine enantiomers in different matrices used for drug testing and analysis.
Keyphrases
- liquid chromatography
- mass spectrometry
- capillary electrophoresis
- high resolution mass spectrometry
- tandem mass spectrometry
- simultaneous determination
- gas chromatography
- high performance liquid chromatography
- high resolution
- solid phase extraction
- ionic liquid
- single molecule
- loop mediated isothermal amplification
- cardiac surgery
- label free
- real time pcr
- multiple sclerosis
- risk assessment
- acute kidney injury
- human health