Title of article
Differential enhancement of antidepressant penetration into the brain in mice with abcb1ab (mdr1ab) P-Glycoprotein gene disruption
Author/Authors
Manfred Uhr، نويسنده , , Markus T. Grauer، نويسنده , , Florian Holsboer، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2003
Pages
7
From page
840
To page
846
Abstract
Background
Mice with a genetic disruption (knockout) of the multiple drug resistance (abcb1ab) gene were used to examine the effect of the absence of the drug-transporting P-glycoprotein (P-gp) at the blood–brain barrier on the uptake of the antidepressants venlafaxine, paroxetine, mirtazapine, and doxepin and its metabolites into the brain.
Methods
One hour after subcutaneous injection of venlafaxine, paroxetine, mirtazapine, or doxepin, knockout and wildtype mice were sacrificed, and the drug concentrations in brain, spleen, kidney, liver, and plasma were measured.
Results
The cerebrum concentrations of doxepin, venlafaxine, and paroxetine were higher in knockout mice, demonstrating that these substances are substrates of P-gp and that abcb1ab activity at the level of the blood–brain barrier reduces the penetration of these substances into the brain. In contrast, brain distribution of mirtazapine was indistinguishable between the groups.
Conclusions
The differences reported here in brain penetration of antidepressant drugs that depend on the presence of the abcb1ab gene may offer an explanation for poor or nonresponse to antidepressant treatment. Furthermore, they may be able to explain in part the discrepancies between plasma levels of an antidepressant and its clinical effects and side effects.
Keywords
Drug resistance multiple , brain , antidepressive agents , mice knockout , P-glycoprotein
Journal title
Biological Psychiatry
Serial Year
2003
Journal title
Biological Psychiatry
Record number
502123
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