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Extrahepatic metabolism of ibrutinib

Authors :
Rood, Johannes J M
Jamalpoor, Amer
van Hoppe, Stephanie
van Haren, Matthijs J
Wasmann, Roeland E
Janssen, Manoe J
Schinkel, Alfred H
Masereeuw, Rosalinde
Beijnen, Jos H
Sparidans, Rolf W
Rood, Johannes J M
Jamalpoor, Amer
van Hoppe, Stephanie
van Haren, Matthijs J
Wasmann, Roeland E
Janssen, Manoe J
Schinkel, Alfred H
Masereeuw, Rosalinde
Beijnen, Jos H
Sparidans, Rolf W
Source :
Investigational New Drugs vol.39 (2021) nr.1 p.1-14 [ISSN 0167-6997]
Publication Year :
2021

Abstract

Ibrutinib is a first-in-class Bruton's kinase inhibitor used in the treatment of multiple lymphomas. In addition to CYP3A4-mediated metabolism, glutathione conjugation can be observed. Subsequently, metabolism of the conjugates and finally their excretion in feces and urine occurs. These metabolites, however, can reach substantial concentrations in human subjects, especially when CYP3A4 is inhibited. Ibrutinib has unexplained nephrotoxicity and high metabolite concentrations are also found in kidneys of Cyp3a knockout mice. Here, a mechanism is proposed where the intermediate cysteine metabolite is bioactivated. The metabolism of ibrutinib through this glutathione cycle was confirmed in cultured human renal proximal tubule cells. Ibrutinib-mediated toxicity was enhanced in-vitro by inhibitors of breast cancer resistance protein (BCRP), P-glycoprotein (P-gp) and multidrug resistance protein (MRP). This was a result of accumulating cysteine metabolite levels due to efflux inhibition. Finally, through inhibition of downstream metabolism, it was shown now that direct conjugation was responsible for cysteine metabolite toxicity.

Details

Database :
OAIster
Journal :
Investigational New Drugs vol.39 (2021) nr.1 p.1-14 [ISSN 0167-6997]
Notes :
DOI: 10.1007/s10637-020-00970-x, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1445814758
Document Type :
Electronic Resource