4.5 Article

In vivo induction of P-glycoprotein expression at the mouse blood-brain barrier: an intracerebral microdialysis study

期刊

JOURNAL OF NEUROCHEMISTRY
卷 127, 期 3, 页码 -

出版社

WILEY
DOI: 10.1111/jnc.12344

关键词

blood-brain barrier; induction; microdialysis; P-glycoprotein; pregnane X receptor; quinidine

资金

  1. Canadian Institutes of Health Research
  2. International Life Sciences Institute
  3. James H Cummings Foundation
  4. Scottish Rite Charitable Foundation
  5. National Institutes of Health [1P01GM095467]
  6. Natural Sciences and Engineering Research Council of Canada

向作者/读者索取更多资源

Intracerebral microdialysis was utilized to investigate the effect of P-glycoprotein (a drug efflux transporter) induction at the mouse blood-brain barrier (BBB) on brain extracellular fluid concentrations of quinidine, an established substrate of P-glycoprotein. Induction was achieved by treating male CD-1 mice for 3days with 5mg/kg/day dexamethasone (DEX), a ligand of the nuclear receptor, pregnane X receptor, and a P-glycoprotein inducer. Tandem liquid chromatography mass spectrometric method was used to quantify analytes in dialysate, blood and plasma. P-glycoprotein, pregnane X receptor and Cyp3a11 (metabolizing enzyme for quinidine) protein expression in capillaries and brain homogenates was measured by immunoblot analysis. Following quinidine i.v. administration, the average ratio of unbound quinidine concentrations in brain extracellular fluid (determined from dialysate samples) to plasma at steady state (375-495min) or K-p,K- uu,K- (ECF/Plasma) in the DEX-treated animals was 2.5-fold lower compared with vehicle-treated animals. In DEX-treated animals, P-glycoprotein expression in brain capillaries was 1.5-fold higher compared with vehicle-treated animals while Cyp3a11 expression in brain capillaries was not significantly different between the two groups. These data demonstrate that P-gp induction mediated by DEX at the BBB can significantly reduce quinidine brain extracellular fluid concentrations by decreasing its brain permeability and further suggest that drug-drug interactions as a result of P-gp induction at the BBB are possible.

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