Potentials of ion trap collisional spectrometry for liquid chromatography/electrospray ionization tandem mass spectrometry determination of buprenorphine and nor-buprenorphine in urine, blood and hair samples

A liquid chromatography/electrospray ionization tandem mass spectrometry (LC/ESI‐MS/MS) method has been developed for the analysis of buprenorphine (BUP) and nor‐buprenorphine (NBUP) in biological fluids. Analytes are isolated from urine and blood, after addition of d4‐buprenorphine (d4‐BUP) as inte...

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Veröffentlicht in:Rapid communications in mass spectrometry 2006-01, Vol.20 (8), p.1257-1265
Hauptverfasser: Favretto, Donata, Frison, Giampietro, Vogliardi, Susanna, Ferrara, Santo Davide
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Sprache:eng
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Zusammenfassung:A liquid chromatography/electrospray ionization tandem mass spectrometry (LC/ESI‐MS/MS) method has been developed for the analysis of buprenorphine (BUP) and nor‐buprenorphine (NBUP) in biological fluids. Analytes are isolated from urine and blood, after addition of d4‐buprenorphine (d4‐BUP) as internal standard, by solid‐phase extraction. Preparation of hair involves external decontamination, mechanical pulverization, overnight incubation in acidic medium, and neutralization prior to extraction. Enzymatic hydrolysis with β‐glucuronidase may be performed to distinguish between free and total BUP. Chromatographic separation is accomplished by gradient elution on a cyanopropyl 2.1 × 150 mm column. Positive ion ESI and MS analyses are carried out in an ion trap mass spectrometer. The use of this mass analyzer allows effective collisional experiments to be performed on ESI‐generated MH+ species. Abundant product ions are produced, which can be monitored together with precursor ions without losing sensitivity. Thus, assay selectivity is definitely increased with respect to LC/ESI‐MS/MS methods in which only precursor ions are monitored. The method has good linearity (calibration curves were linear in the range 0.1–10 ng/mL in urine and blood, in the range 10–160 pg/mg in hair) and limits of detection of 0.05 ng/mL for both BUP and NBUP in blood and urine samples, of 4 pg/mg for both analytes in hair. Both intra‐ and inter‐assay precision and accuracy were satisfactory at three concentrations studied: relative standard deviations were
ISSN:0951-4198
1097-0231
DOI:10.1002/rcm.2444