4.1 Article

Adeno-associated virus-mediated knockdown demonstrates the major role of hepatic Bcrp in the overall disposition of the active metabolite of the tyrosine kinase inhibitor regorafenib in mice

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JAPANESE SOC STUDY XENOBIOTICS
DOI: 10.1016/j.dmpk.2022.100483

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Breast cancer resistance protein; Adeno-associated virus; Active metabolite; Gene knockdown; Pharmacokinetics

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This study used an in vivo knockdown approach to investigate the role of BCRP in the disposition of regorafenib. The results showed that BCRP plays a key role in the disposition of the active metabolite M-5. Knockdown of hepatic Bcrp led to increased concentrations of M-5 in plasma and liver, and decreased biliary excretion.
Breast cancer resistance protein (BCRP) is expressed on hepatic bile canalicular membranes; however, its impact on substrate drug disposition is limited. This study proposes an in vivo knockdown approach using adeno-associated virus encoding short hairpin RNA (shRNA) targeting the bcrp gene (AAV-shBcrp) to clarify the substrate, the overall disposition of which is largely governed by hepatic Bcrp. The disposition of the tyrosine kinase inhibitor, regorafenib, was first examined in bcrp gene knockout (Bcrp-/ -) and wild-type (WT) mice, as it was sequentially converted to active metabolites M -2 and M -5, which are BCRP substrates. After oral administration of regorafenib, plasma and liver concentrations of M -5, but not regorafenib, were higher in Bcrp-/- than WT mice. To directly examine the role of hepatic Bcrp in M -5 disposition, M -5 was intravenously injected into mice three weeks after the intravenous injection of AAV-shBcrp, when mRNA of Bcrp in the liver (but not the small intestine) was down-regulated. AAV-shBcrp-treated mice showed higher M -5 concentration in plasma and liver, but lower biliary excretion than the control mice, indicating the fundamental role of hepatic Bcrp in M -5 disposition. This is the first application of AAV-knockdown strategy to clarify the pharmacokinetic role of xenobiotic efflux transporters in the liver.(c) 2022 The Japanese Society for the Study of Xenobiotics. Published by Elsevier Ltd. All rights reserved.

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