Bioanalysis of ibrutinib, and its dihydrodiol- and glutathione cycle metabolites by liquid chromatography-tandem mass spectrometry

Publication date

2018-07-15

Authors

Rood, Johannes J.M.ISNI 0000000493300255
Dormans, P J AISNI 0000000518163964
van Haren, Matthijs J.ISNI 0000000436393010
Schellens, Jan H MISNI 0000000042971906
Beijnen, JosISNI 0000000140305595
Sparidans, Rolf WISNI 0000000357085984

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Article
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Abstract

Ibrutinib is a targeted covalent inhibitor frequently used for the treatment of various lymphomas. In addition to oxidative metabolism, it is metabolized through glutathione coupling. The quantitative insight into this kind of metabolism is scarce, and tools for quantitation are lacking. The non-oxidative metabolism could prove a more prominent role when oxidative metabolism is impaired. Also, in-vitro studies could over-estimate the effect of CYP450-inhibition. To gain quantitative insight into this relatively unknown biotransformation pathway of the drug we have developed a validated simple, fast and sensitive bio-analytical assay for ibrutinib, dihydrodiol-ibrutinib, and the glutathione, cysteinylglycine and cysteine conjugates of ibrutinib in human plasma. The method emphasizes on simplicity, the thiol-conjugates were synthesized by a simple one step synthesis, followed by LC-purification. Sample preparation was done by a simple protein crash with acetonitrile containing labeled internal standards, evaporation of solvents, and reconstitution in eluent. Finally, the compounds were quantified using UHPLC-MS/MS. The assay was successfully validated in a 0.5-500nM calibration range for all compounds, and also a lower range of 0.05-50 nM was demonstrated for ibrutinib to accommodate for even the lowest trough levels. This assay has a considerably higher sensitivity than previous published assays, with the previous lowest LLOQ being 1.14 nM. Both, ibrutinib, dihydrodiol-ibrutinib and the cysteine conjugate were deemed stable under refrigerated or frozen storage conditions. At room temperature, the glutathione conjugate showed rapid degradation into the cysteinylglycine conjugate in plasma. Finally, the applicability of the assay was demonstrated in patient samples.

Keywords

Aged, Chromatography, Liquid/methods, Drug Stability, Glutathione/blood, Humans, Linear Models, Male, Naphthalenes/blood, Pyrazoles/blood, Pyrimidines/blood, Reproducibility of Results, Sensitivity and Specificity, Tandem Mass Spectrometry/methods

Citation

Rood, J J M, Dormans, P J A, van Haren, M J, Schellens, J H M, Beijnen, J H & Sparidans, R W 2018, 'Bioanalysis of ibrutinib, and its dihydrodiol- and glutathione cycle metabolites by liquid chromatography-tandem mass spectrometry', Journal of Chromatography B: Analytical Technologies in the Biomedical and Life Sciences, vol. 1090, pp. 14-21. https://doi.org/10.1016/j.jchromb.2018.05.011