Quantitative determination of opioids in whole blood using fully automated dried blood spot desorption coupled to on-line SPE-LC-MS/MS
Autor: | Jack Henion, Ruth Verplaetse |
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Rok vydání: | 2015 |
Předmět: |
Bioanalysis
Chromatography Chemistry 010401 analytical chemistry Codeine Pharmaceutical Science Norhydrocodone 030226 pharmacology & pharmacy 01 natural sciences 0104 chemical sciences Analytical Chemistry Dried blood spot Matrix (chemical analysis) 03 medical and health sciences 0302 clinical medicine medicine Environmental Chemistry Solid phase extraction Spectroscopy Dried Blood Spot Testing medicine.drug Whole blood |
Zdroj: | Drug Testing and Analysis. 8:30-38 |
ISSN: | 1942-7603 |
Popis: | Opioids are well known, widely used painkillers. Increased stability of opioids in the dried blood spot (DBS) matrix compared to blood/plasma has been described. Other benefits provided by DBS techniques include point-of-care collection, less invasive micro sampling, more economical shipment, and convenient storage. Current methodology for analysis of micro whole blood samples for opioids is limited to the classical DBS workflow, including tedious manual punching of the DBS cards followed by extraction and liquid chromatography-tandem mass spectrometry (LC-MS/MS) bioanalysis. The goal of this study was to develop and validate a fully automated on-line sample preparation procedure for the analysis of DBS micro samples relevant to the detection of opioids in finger prick blood. To this end, automated flow-through elution of DBS cards was followed by on-line solid-phase extraction (SPE) and analysis by LC-MS/MS. Selective, sensitive, accurate, and reproducible quantitation of five representative opioids in human blood at sub-therapeutic, therapeutic, and toxic levels was achieved. The range of reliable response (R(2) ≥0.997) was 1 to 500 ng/mL whole blood for morphine, codeine, oxycodone, hydrocodone; and 0.1 to 50 ng/mL for fentanyl. Inter-day, intra-day, and matrix inter-lot accuracy and precision was less than 15% (even at lower limits of quantitation (LLOQ) level). The method was successfully used to measure hydrocodone and its major metabolite norhydrocodone in incurred human samples. Our data support the enormous potential of DBS sampling and automated analysis for monitoring opioids as well as other pharmaceuticals in both anti-doping and pain management regimens. |
Databáze: | OpenAIRE |
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