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1.
Br J Pharmacol ; 158(3): 693-705, 2009 Oct.
Article in English | MEDLINE | ID: mdl-19785645

ABSTRACT

Membrane transporters are now recognized as important determinants of the transmembrane passage of drugs. Organic anion transporting polypeptides (OATP) form a family of influx transporters expressed in various tissues important for pharmacokinetics. Of the 11 human OATP transporters, OATP1B1, OATP1B3 and OATP2B1 are expressed on the sinusoidal membrane of hepatocytes and can facilitate the liver uptake of their substrate drugs. OATP1A2 is expressed on the luminal membrane of small intestinal enterocytes and at the blood-brain barrier, potentially mediating drug transport at these sites. Several clinically used drugs have been identified as substrates of OATP transporters (e.g. many statins are substrates of OATP1B1). Some drugs may inhibit OATP transporters (e.g. cyclosporine) causing pharmacokinetic drug-drug interactions. Moreover, genetic variability in genes encoding OATP transporters can result in marked inter-individual differences in pharmacokinetics. For example, a single nucleotide polymorphism (c.521T > C, p.Val174Ala) in the SLCO1B1 gene encoding OATP1B1 decreases the ability of OATP1B1 to transport active simvastatin acid from portal circulation into the liver, resulting in markedly increased plasma concentrations of simvastatin acid and an enhanced risk of simvastatin-induced myopathy. SLCO1B1 polymorphism also affects the pharmacokinetics of many other, but not all (fluvastatin), statins and that of the antidiabetic drug repaglinide, the antihistamine fexofenadine and the endothelin A receptor antagonist atrasentan. This review compiles the current knowledge about the expression and function of human OATP transporters, their substrate and inhibitor specificities, as well as pharmacogenetics.


Subject(s)
Organic Anion Transporters/physiology , Pharmaceutical Preparations/metabolism , Pharmacokinetics , Blood-Brain Barrier/metabolism , Drug Interactions , Genetic Variation , Humans , Intestinal Absorption , Liver/metabolism , Liver-Specific Organic Anion Transporter 1 , Organic Anion Transporters/genetics , Organic Anion Transporters, Sodium-Independent/genetics , Organic Anion Transporters, Sodium-Independent/physiology , Peptides/physiology , Pharmacogenetics , Solute Carrier Organic Anion Transporter Family Member 1B3
2.
Clin Pharmacol Ther ; 84(3): 403-11, 2008 Sep.
Article in English | MEDLINE | ID: mdl-18388877

ABSTRACT

Repaglinide is metabolized by cytochrome P450 (CYP) 2C8 and 3A4. Gemfibrozil has the effect of increasing the area under the concentration-time curve (AUC) of repaglinide eightfold. We studied the effect of dosing interval on the extent of the gemfibrozil-repaglinide interaction. In a randomized five-phase crossover study, 10 healthy volunteers ingested 0.25 mg repaglinide, with or without gemfibrozil pretreatment. Plasma repaglinide, gemfibrozil, their metabolites, and blood glucose were measured. When the last dose of 600 mg gemfibrozil was ingested simultaneously with repaglinide, or 3, 6, or 12 h before, it increased the AUC(0-infinity) of repaglinide 7.0-, 6.5-, 6.2- and 5.0-fold, respectively (P < 0.001). The peak repaglinide concentration increased approximately twofold (P < 0.001), and the half-life was prolonged from 1.2 h to 2-3 h (P < 0.001) during all the gemfibrozil phases. The drug interaction effects persisted at least 12 h after gemfibrozil was administered, although plasma gemfibrozil and gemfibrozil 1-O-beta-glucuronide concentrations were only 5 and 10% of their peak values, respectively. The long-lasting interaction is likely caused by mechanism-based inhibition of CYP2C8 by gemfibrozil glucuronide.


Subject(s)
Blood Glucose/drug effects , Carbamates/pharmacokinetics , Gemfibrozil/pharmacology , Hypoglycemic Agents/pharmacokinetics , Hypolipidemic Agents/pharmacology , Piperidines/pharmacokinetics , Adult , Area Under Curve , Aryl Hydrocarbon Hydroxylases/antagonists & inhibitors , Aryl Hydrocarbon Hydroxylases/genetics , Cytochrome P-450 CYP2C8 , Drug Interactions , Female , Gemfibrozil/analogs & derivatives , Gemfibrozil/blood , Gemfibrozil/pharmacokinetics , Glucuronates/blood , Glucuronates/pharmacokinetics , Half-Life , Humans , Hypolipidemic Agents/blood , Hypolipidemic Agents/pharmacokinetics , Male
3.
Clin Pharmacol Ther ; 84(4): 488-96, 2008 Oct.
Article in English | MEDLINE | ID: mdl-19238654

ABSTRACT

In a randomized crossover study, 24 SLCO181-genotyped healthy volunteers were given daily doses of 1,200 mg gemfibrozil, 40 mg atorvastatin, or placebo, followed by 0.25 mg of repaglinide on day 3. The mean increase in the repaglinide area under the plasma concentration-time curve from 0 h to infinity (AUC(0-infinity)) produced by gemfibrozil was larger in individuals with the SLCO1B1 c.521CC genotype (n = 6) than in those with the c.521TC (n = 6) and c.521TT (n = 12) genotypes, by factors of 1.56 (P = 0.004) and 1.54 (P = 0.002), respectively. Gemfibrozil prolonged the repaglinide elimination half-life 1.43 times more in the c.521 CC group than in the c.521TT group (P = 0.047), but no differences were seen in the effects on peak plasma concentration (C(max)). While on gemfibrozil, the minimum blood glucose concentration after repaglinide intake was 19% lower in the c.521CC participants than in the c.521TT participants (P = 0.009). In the c.521TT group, atorvastatin intake had the effect of increasing repaglinide Cmax and AUC(0-infinity) by41% (P = 0.001) and 18% (P = 0.033), respectively. In conclusion, the extent of gemfibrozil-repaglinide interaction depends on SLCO1B1 genotype. Atorvastatin raises plasma repaglinide concentrations, probably by inhibiting organic anion transporting polypeptide 1B1 (OATP1B1).


Subject(s)
Carbamates/pharmacokinetics , Gemfibrozil/pharmacokinetics , Heptanoic Acids/pharmacokinetics , Hypolipidemic Agents/pharmacokinetics , Organic Anion Transporters/genetics , Piperidines/pharmacokinetics , Polymorphism, Genetic , Pyrroles/pharmacokinetics , Administration, Oral , Adult , Area Under Curve , Atorvastatin , Blood Glucose/analysis , Carbamates/administration & dosage , Carbamates/blood , Cross-Over Studies , Drug Interactions , Female , Gemfibrozil/administration & dosage , Gemfibrozil/blood , Genotype , Half-Life , Heptanoic Acids/administration & dosage , Heptanoic Acids/blood , Humans , Hypoglycemic Agents/administration & dosage , Hypoglycemic Agents/blood , Hypoglycemic Agents/pharmacokinetics , Hypolipidemic Agents/administration & dosage , Hypolipidemic Agents/blood , Liver-Specific Organic Anion Transporter 1 , Male , Organic Anion Transporters/metabolism , Piperidines/administration & dosage , Piperidines/blood , Pyrroles/administration & dosage , Pyrroles/blood
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