Review Article: New insights into the mechanisms of hepatic transport and bile secretion
- 28 June 1996
- journal article
- review article
- Published by Wiley in Journal of Gastroenterology and Hepatology
- Vol. 11 (6) , 575-579
- https://doi.org/10.1111/j.1440-1746.1996.tb01705.x
Abstract
The transport processes responsible for bile flow are reviewed. Canalicular bile acid-dependent flow is the result of active transport of bile acids by the hepatocyte into bile canaliculi. Bile acids are taken up by at least two transport systems whose mRNA have been expressed in Xenopus oocytes: (i) a Na(+)-dependent system, named NTCP, and (ii) a Na(+)- independent system, named OATP. Bile acids are then secreted into bile by two other transport systems, an ATP-dependent system and an 'electrogenic' voltage-dependent system. It is not known whether these two systems are mediated by the same protein or by two different proteins. Canalicular bile acid-independent flow is mainly the result of the secretion of glutathione into bile. The canalicular membrane also contains several proteins of the multi drug resistance (MDR) family. MDRI is responsible for biliary secretion of cationic drugs. MDR3 (mdr 2 in mice) plays a major role in the secretion of phospholipids. A third MDR-related protein has been shown recently to be the canalicular carrier of organic anions, such as bilirubin and dyes (the canalicular multiple organic anion transporter, or cMOAT). Biliary epithelial cells secrete a bicarbonate-rich solution, mostly in response to secretin. This secretion depends upon the presence, on the apical membrane of these cells of the CFTR, a chloride channel activated by cAMP and of a chloride/bicarbonate exchanger. Knowledge of these transport systems should allow a better understanding of the mechanisms involved in cholestasis.Keywords
This publication has 24 references indexed in Scilit:
- Regulation of biliary lipid secretion by mdr2 P-glycoprotein in the mouse.Journal of Clinical Investigation, 1995
- 6. The Familial Unconjugated HyperbilirubinemiasSeminars in Liver Disease, 1994
- Molecular cloning, chromosomal localization, and functional characterization of a human liver Na+/bile acid cotransporter.Journal of Clinical Investigation, 1994
- Homozygous disruption of the murine MDR2 P-glycoprotein gene leads to a complete absence of phospholipid from bile and to liver diseasePublished by Elsevier ,1993
- ATP-dependent taurocholate transport by rat liver canalicular membrane vesicles*1, *2Hepatology, 1991
- ATP-dependent taurocholate transport by rat liver canalicular membrane vesiclesHepatology, 1991
- Hepatobiliary transport of glutathione and glutathione conjugate in rats with hereditary hyperbilirubinemia.Journal of Clinical Investigation, 1989
- The Role Of Cytoplasmic Proteins In Hepatic Bile Acid TransportAnnual Review of Physiology, 1989
- Immunoperoxidase localization of bile salts in rat liver cells. Evidence for a role of the Golgi apparatus in bile salt transport.Journal of Clinical Investigation, 1988
- Biliary physiology in rats with bile ductular cell hyperplasia. Evidence for a secretory function of proliferated bile ductules.Journal of Clinical Investigation, 1988