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2.
Clin Pharmacol Ther ; 95(4): 432-8, 2014 Apr.
Article in English | MEDLINE | ID: mdl-24419562

ABSTRACT

This study aimed to evaluate the effects of green tea on the pharmacokinetics and pharmacodynamics of the ß-blocker nadolol. Ten healthy volunteers received a single oral dose of 30 mg nadolol with green tea or water after repeated consumption of green tea (700 ml/day) or water for 14 days. Catechin concentrations in green tea and plasma were determined. Green tea markedly decreased the maximum plasma concentration (C(max)) and area under the plasma concentration-time curve (AUC(0-48)) of nadolol by 85.3% and 85.0%, respectively (P < 0.01), without altering renal clearance of nadolol. The effects of nadolol on systolic blood pressure were significantly reduced by green tea. [(3)H]-Nadolol uptake assays in human embryonic kidney 293 cells stably expressing the organic anion-transporting polypeptides OATP1A2 and OATP2B1 revealed that nadolol is a substrate of OATP1A2 (Michaelis constant (K(m)) = 84.3 µmol/l) but not of OATP2B1. Moreover, green tea significantly inhibited OATP1A2-mediated nadolol uptake (half-maximal inhibitory concentration, IC(50) = 1.36%). These results suggest that green tea reduces plasma concentrations of nadolol possibly in part by inhibition of OATP1A2-mediated uptake of nadolol in the intestine.


Subject(s)
Adrenergic beta-Antagonists/pharmacokinetics , Catechin/pharmacokinetics , Food-Drug Interactions , Nadolol/pharmacokinetics , Tea/chemistry , Adrenergic beta-Antagonists/pharmacology , Adult , Area Under Curve , Blood Pressure/drug effects , Cross-Over Studies , Female , HEK293 Cells , Humans , Inhibitory Concentration 50 , Intestinal Mucosa/metabolism , Male , Nadolol/pharmacology , Organic Anion Transporters/metabolism , Young Adult
3.
Phytomedicine ; 20(14): 1247-50, 2013 Nov 15.
Article in English | MEDLINE | ID: mdl-23920278

ABSTRACT

Green tea catechins have been shown to affect the activities of drug transporters in vitro, including P-glycoprotein and organic anion transporting polypeptides. However, it remains unclear whether catechins influence the in vivo disposition of substrate drugs for these transporters. In the present study, we investigated effects of green tea extract (GTE) and (-)-epigallocatechin-3-gallate (EGCG) on pharmacokinetics of a non-selective hydrophilic ß-blocker nadolol, which is reported to be a substrate for several drug transporters and is not metabolized by cytochrome P450 enzymes. Male Sprague-Dawley rats received GTE (400 mg/kg), EGCG (150 mg/kg) or saline (control) by oral gavage, 30 min before a single intragastric administration of 10 mg/kg nadolol. Plasma and urinary concentrations of nadolol were determined using high performance liquid chromatography. Pharmacokinetic parameters were estimated by a noncompartmental analysis. Pretreatment with GTE resulted in marked reductions in the maximum concentration (Cmax) and area under the time-plasma concentration curve (AUC) of nadolol by 85% and 74%, respectively, as compared with control. In addition, EGCG alone significantly reduced Cmax and AUC of nadolol. Amounts of nadolol excreted into the urine were decreased by pretreatments with GTE and EGCG, while the terminal half-life of nadolol was not different among groups. These results suggest that the coadministration with green tea catechins, particularly EGCG, causes a significant alteration in the pharmacokinetics of nadolol, possibly through the inhibition of its intestinal absorption mediated by uptake transporters.


Subject(s)
Camellia sinensis/chemistry , Catechin/analogs & derivatives , Herb-Drug Interactions , Nadolol/pharmacokinetics , Plant Extracts/pharmacology , Animals , Area Under Curve , Catechin/pharmacology , Intestinal Absorption , Male , Nadolol/blood , Nadolol/urine , Rats , Rats, Sprague-Dawley
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