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The effect of Bcrp1 (Abcg2) on the in vivo pharmacokinetics and brain penetration of imatinib mesylate (gleevec): Implications for the use of breast cancer resistance protein and P-glycoprotein inhibitors to enable the brain penetration of imatinib in patients

  • Pauline Breedveld
  • , Dick Pluim
  • , Greta Cipriani
  • , Pieter Wielinga
  • , Olaf van Tellingen
  • , Alfred H. Schinkel
  • , Jan H. M. Schellens
  • Utrecht University

Research output: Contribution to journalJournal articleResearchpeer-review

Abstract

Imatinib mesylate (signal transduction inhibitor 571, Gleevec) is a potent and selective tyrosine kinase inhibitor, which was shown to effectively inhibit platelet-derived growth factor-induced glioblastoma cell growth preclinically. However, in patients, a limited penetration of imatinib into the brain has been reported. Imatinib is transported in vitro and in vivo by P-glycoprotein (P-gp; ABCB1), which thereby limits its distribution into the brain in mice. Previously, imatinib was shown to potently inhibit human breast cancer resistance protein (BCRP; ABCG2). Here, we show that imatinib is efficiently transported by mouse Bcrp1 in transfected Madin-Darby canine kidney strain 11 (MDCKII) monolayers. Furthermore, we show that the clearance of i.v. imatinib is significantly decreased 1.6-fold in Bcrp1 knockout mice compared with wild-type mice. At t=2 hours, the brain penetration of i.v. imatinib was significantly 2.5-fold increased in Bcrp1 knockout mice compared with control mice. We tested the hypothesis that P-gp and BCRP inhibitors, such as elacridar and pantoprazole, improve the brain penetration of imatinib. Firstly, we showed in vitro that pantoprazole and elacridar inhibit the Bcrp1-mediated transport of imatinib in MDCKII-Bcrp1 cells. Secondly, we showed that co-administration of pantoprazole or elacridar significantly reduced the clearance of i.v. imatinib in wild-type mice by respectively 1.7-fold and 1.5-fold. Finally, in wild-type mice treated with pantoprazole or elacridar, the brain penetration of i.v. imatinib significantly increased 1.8-fold and 4.2-fold, respectively. Moreover, the brain penetration of p.o. imatinib increased 5.2-fold when pantoprazole was co-administered in wild-type mice. Our results suggest that co-administration of BCRP and P-gp inhibitors may improve delivery of imatinib to malignant gliomas.
Original languageEnglish
JournalCancer Research
Volume65
Issue number7
Pages (from-to)2577-2582
ISSN0008-5472
Publication statusPublished - 2005
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • glioblastoma Glioblastoma (MeSH) nervous system disease, neoplastic disease drug therapy
  • Carnivora Mammalia Vertebrata Chordata Animalia (Animals, Carnivores, Chordates, Mammals, Nonhuman Vertebrates, Nonhuman Mammals, Vertebrate) - Canidae [85765] Madin-Darby canine kidney cell line cell_line
  • Primates Mammalia Vertebrata Chordata Animalia (Animals, Chordates, Humans, Mammals, Primates, Vertebrate) - Hominidae [86215] human common
  • Rodentia Mammalia Vertebrata Chordata Animalia (Animals, Chordates, Mammals, Nonhuman Vertebrates, Nonhuman Mammals, Rodents, Vertebrate) - Muridae [86375] mouse common
  • Abcg2
  • Bcrp1
  • breast cancer resistance protein inhibition
  • elacridar 143664-11-3
  • imatinib mesylate Gleevec 220127-57-1 antineoplastic-drug, enzyme inhibitor-drug intravenous administration, pharmacokinetics
  • P-glycoprotein EC 3.6.3.44
  • pantoprazole 102625-70-7
  • platelet-derived growth factor
  • tyrosine kinase inhibitor
  • 02506, Cytology - Animal
  • 02508, Cytology - Human
  • 10060, Biochemistry studies - General
  • 10064, Biochemistry studies - Proteins, peptides and amino acids
  • 10068, Biochemistry studies - Carbohydrates
  • 12512, Pathology - Therapy
  • 20504, Nervous system - Physiology and biochemistry
  • 20506, Nervous system - Pathology
  • 22002, Pharmacology - General
  • 22005, Pharmacology - Clinical pharmacology
  • 24004, Neoplasms - Pathology, clinical aspects and systemic effects
  • 24008, Neoplasms - Therapeutic agents and therapy
  • Neural Coordination
  • brain nervous system
  • Biochemistry and Molecular Biophysics
  • Nervous System
  • Pharmacology
  • Tumor Biology

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