Bile is primarily secreted in hepatocytes (i.e. the canalicular bile) and subsequently delivered to the intrahepatic bile ducts, where is modified by cholangiocytes (i.e. the ductal bile). Bile formation is the result of the coordinated interactions of membrane-transport systems that generate the vectorial movement of solutes and osmotically driven water molecules. Hepatocytes and cholangiocytes express aquaporins, specialized membrane channel proteins that facilitate the osmotic transport of water. In this review, we provide a summary of what is known on liver AQPs and their significance in canalicular and ductal bile formation under normal and pathological conditions
Bile formation is one of the key functions of liver. Hepatocytes are the major cell type in liver an...
Our previous work supports a role for aquaporin-8 (AQP8) water channels in rat hepatocyte bile form...
Estrogens can cause liver cholestatic disease. As downregulation of hepatocyte canalicular aquaporin...
Bile is primarily secreted in hepatocytes (i.e. the canalicular bile) and subsequently delivered to ...
Bile is formed by an osmotic process generated by ATPdependent secretion of biliary constituents fr...
An essential function of the liver is the formation and secretion of bile, a complex aqueous solutio...
Bile formation by hepatocytes is an osmotic secretory process that is ultimately dependent on the bi...
Bile formation by hepatocytes is an osmotic secretory process resulting from the canalicular secreti...
Formation of bile and generation of bile flow are driven by the active secretion of bile salts (BS),...
Bile secretion by hepatocytes is an osmotic process. The output of bile salts and other organic anio...
The biological importance of the aquaporin family of water channels was recently acknowledged by the...
Cholangiocytes line the intrahepatic bile ducts and regulate salt and water secretion during bile fo...
Bile formation by hepatocytes is an osmotic secretory process resulting from the canalicular secreti...
Hepatocytes express the water channel aquaporin-8 (AQP8), which is mainly localized in intracellular...
Aquaporins (AQPs) are channel proteins largely present in mammals where they facilitate the permeati...
Bile formation is one of the key functions of liver. Hepatocytes are the major cell type in liver an...
Our previous work supports a role for aquaporin-8 (AQP8) water channels in rat hepatocyte bile form...
Estrogens can cause liver cholestatic disease. As downregulation of hepatocyte canalicular aquaporin...
Bile is primarily secreted in hepatocytes (i.e. the canalicular bile) and subsequently delivered to ...
Bile is formed by an osmotic process generated by ATPdependent secretion of biliary constituents fr...
An essential function of the liver is the formation and secretion of bile, a complex aqueous solutio...
Bile formation by hepatocytes is an osmotic secretory process that is ultimately dependent on the bi...
Bile formation by hepatocytes is an osmotic secretory process resulting from the canalicular secreti...
Formation of bile and generation of bile flow are driven by the active secretion of bile salts (BS),...
Bile secretion by hepatocytes is an osmotic process. The output of bile salts and other organic anio...
The biological importance of the aquaporin family of water channels was recently acknowledged by the...
Cholangiocytes line the intrahepatic bile ducts and regulate salt and water secretion during bile fo...
Bile formation by hepatocytes is an osmotic secretory process resulting from the canalicular secreti...
Hepatocytes express the water channel aquaporin-8 (AQP8), which is mainly localized in intracellular...
Aquaporins (AQPs) are channel proteins largely present in mammals where they facilitate the permeati...
Bile formation is one of the key functions of liver. Hepatocytes are the major cell type in liver an...
Our previous work supports a role for aquaporin-8 (AQP8) water channels in rat hepatocyte bile form...
Estrogens can cause liver cholestatic disease. As downregulation of hepatocyte canalicular aquaporin...