Detailed knowledge regarding the influence of hepatic transport proteins on drug disposition has advanced at a rapid pace over the past decade. Efflux transport proteins located in the basolateral and apical (canalicular) membranes of hepatocytes play an important role in the hepatic elimination of many endogenous and exogenous compounds, including drugs and metabolites. This review focuses on the role of these efflux transporters in hepatic drug excretion. The impact of these proteins as underlying factors for disease is highlighted, and the importance of hepatic efflux proteins in the efficacy and toxicity of drugs is discussed. In addition, a brief overview of methodology to evaluate the function of hepatic efflux transport proteins is p...
The liver fulfills many vital functions for the body, among them bile formation and detoxification. ...
Polarized expression and cooperation of drug transporters in epithelial cells are critical in govern...
Generation of bile flow is a regulated, ATP-dependent process and depends on the coordinated action ...
Detailed knowledge regarding the influence of hepatic transport proteins on drug disposition has adv...
The objective of this dissertation project was to develop preclinical and clinical tools to assess t...
The role of hepatobiliary transporters in drug-induced liver injury remains poorly understood. Vario...
The liver is the primary organ for the metabolic degradation of xenobiotics. Transmembrane transport...
Together with drug metabolising enzymes, transmembrane transporters are important determinants of dr...
The role of hepatobiliary transporters in drug-induced liver injury remains poorly understood. Vario...
The role of hepatobiliary transporters in drug-induced liver injury remains poorly understood. Vario...
Transport proteins in the liver play a crucial role in hepatic uptake and biliary excretion of drugs...
The objective of this doctoral dissertation research was to understand how hepatic transporter funct...
International audienceThe role of hepatobiliary transporters in drug-induced liver injury remains po...
Hepatic uptake and efflux transporters govern the systemic and hepatic exposure of many drugs and me...
Cells need to strictly control their internal milieu, a function which is performed by the plasma me...
The liver fulfills many vital functions for the body, among them bile formation and detoxification. ...
Polarized expression and cooperation of drug transporters in epithelial cells are critical in govern...
Generation of bile flow is a regulated, ATP-dependent process and depends on the coordinated action ...
Detailed knowledge regarding the influence of hepatic transport proteins on drug disposition has adv...
The objective of this dissertation project was to develop preclinical and clinical tools to assess t...
The role of hepatobiliary transporters in drug-induced liver injury remains poorly understood. Vario...
The liver is the primary organ for the metabolic degradation of xenobiotics. Transmembrane transport...
Together with drug metabolising enzymes, transmembrane transporters are important determinants of dr...
The role of hepatobiliary transporters in drug-induced liver injury remains poorly understood. Vario...
The role of hepatobiliary transporters in drug-induced liver injury remains poorly understood. Vario...
Transport proteins in the liver play a crucial role in hepatic uptake and biliary excretion of drugs...
The objective of this doctoral dissertation research was to understand how hepatic transporter funct...
International audienceThe role of hepatobiliary transporters in drug-induced liver injury remains po...
Hepatic uptake and efflux transporters govern the systemic and hepatic exposure of many drugs and me...
Cells need to strictly control their internal milieu, a function which is performed by the plasma me...
The liver fulfills many vital functions for the body, among them bile formation and detoxification. ...
Polarized expression and cooperation of drug transporters in epithelial cells are critical in govern...
Generation of bile flow is a regulated, ATP-dependent process and depends on the coordinated action ...