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OATP1B1, OATP1B3, and mrp2 are involved in hepatobiliary transport of olmesartan, a novel angiotensin II blocker.
- Source :
-
Drug metabolism and disposition: the biological fate of chemicals [Drug Metab Dispos] 2006 May; Vol. 34 (5), pp. 862-9. Date of Electronic Publication: 2006 Feb 24. - Publication Year :
- 2006
-
Abstract
- Hepatic uptake and biliary excretion of olmesartan, a new angiotensin II blocker, were investigated in vitro using human hepatocytes, cells expressing uptake transporters and canalicular membrane vesicles, and in vivo using Eisai hyperbilirubinemic rats (EHBR), inherited multidrug resistance-associated protein (mrp2)-deficient rats. The uptake by human hepatocytes reached saturation with a Michaelis constant (K(m)) of 29.3 +/- 9.9 microM. Both Na(+)-dependent and Na(+)-independent uptake of olmesartan by human hepatocytes were observed. The uptake by Na(+)-independent human liver-specific organic anion transporters OATP1B1 and OATP1B3 expressed in Xenopus laevis oocytes was also saturable, with K(m) values of 42.6 +/- 28.6 and 71.8 +/- 21.6 microM, respectively. The Na(+)-dependent taurocholate-cotransporting polypeptide expressed in HEK 293 cells did not transport olmesartan. The cumulative biliary excretion in EHBR was one-sixth compared with that in Sprague-Dawley rats. ATP-dependent uptake of olmesartan was observed in both human canalicular membrane vesicles (hCMVs) and MRP2-expressing vesicles. An MRP inhibitor, MK-571 ([[[3-[2-(7-chloro-2-quinolinyl)ethenyl]phenyl][3-(dimethylamino)-3-oxopropyl]thio]methyl]thio]-propanoic acid) completely inhibited the uptake of olmesartan by hCMVs. In conclusion, the hepatic uptake and biliary excretion of olmesartan are mediated by transporters in humans. OATP1B1 and OATP1B3 are involved in hepatic uptake, at least in part, and MRP2 plays a dominant role in the biliary excretion.
- Subjects :
- Animals
Area Under Curve
Bile Canaliculi metabolism
Cell Line
Cell Membrane metabolism
Female
Hepatocytes metabolism
Humans
Liver-Specific Organic Anion Transporter 1
Male
Oocytes metabolism
Rats
Rats, Sprague-Dawley
Solute Carrier Organic Anion Transporter Family Member 1B3
Xenopus laevis
Angiotensin II antagonists & inhibitors
Bile metabolism
Imidazoles metabolism
Liver metabolism
Mitochondrial Proteins metabolism
Organic Anion Transporters metabolism
Organic Anion Transporters, Sodium-Independent metabolism
Ribosomal Proteins metabolism
Saccharomyces cerevisiae Proteins metabolism
Tetrazoles metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 0090-9556
- Volume :
- 34
- Issue :
- 5
- Database :
- MEDLINE
- Journal :
- Drug metabolism and disposition: the biological fate of chemicals
- Publication Type :
- Academic Journal
- Accession number :
- 16501004
- Full Text :
- https://doi.org/10.1124/dmd.105.008888