We have developed a new approach, to our knowledge, to quantify the equilibrium exchange kinetics of carrier-mediated transmembrane transport of fluorinated substrates. The method is based on adapted kinetic theory that describes the concentration dependence of the transmembrane exchange rates of two competing, simultaneously transported species. Using the new approach, we quantified the kinetics of membrane transport of both anomers of three monofluorinated glucose analogs in human erythrocytes (red blood cells) using 19F NMR exchange spectroscopy. An inosine-based glucose-free medium was shown to promote survival and stable metabolism of red blood cells over the duration of the experiments (several hours). Earlier NMR studies only yielded...
Nuclear magnetic resonance (NMR) spectroscopy was used to study exchange of three distinctly differe...
Nuclear magnetic resonance (NMR) spectroscopy was used to study exchange of three distinctly differe...
AbstractThe rate of exchange of urea across the membranes of human erythrocytes (red blood cells) wa...
We have developed a new approach, to our knowledge, to quantify the equilibrium exchange kinetics of...
We have developed a new approach, to our knowledge, to quantify the equilibrium exchange kinetics of...
Fluorine-19 magnetization transfer studies have been used to measure the transport rate of glucopyra...
AbstractWe present the results of a new NMR-based procedure for measuring the fast transmembrane exc...
AbstractWe present the results of a new NMR-based procedure for measuring the fast transmembrane exc...
The facilitative glucose transporter GLUT1 catalyzes the passive translocation of glucose across pla...
A generalizable 1H NMR technique is developed and used to monitor ß-D-glucose binding to glucose tra...
A generalizable 1H NMR technique is developed and used to monitor ß-D-glucose binding to glucose tra...
The general phenomenon of the transmembr ane 19F NMR chemical shift difference that arises with a nu...
The human glucose transporter GLUT1 is abundant in red blood cells, the blood-brain barrier and epit...
The human glucose transporter GLUT1 is abundant in red blood cells, the blood-brain barrier and epit...
The human glucose transporter GLUT1 is abundant in red blood cells, the blood-brain barrier and epit...
Nuclear magnetic resonance (NMR) spectroscopy was used to study exchange of three distinctly differe...
Nuclear magnetic resonance (NMR) spectroscopy was used to study exchange of three distinctly differe...
AbstractThe rate of exchange of urea across the membranes of human erythrocytes (red blood cells) wa...
We have developed a new approach, to our knowledge, to quantify the equilibrium exchange kinetics of...
We have developed a new approach, to our knowledge, to quantify the equilibrium exchange kinetics of...
Fluorine-19 magnetization transfer studies have been used to measure the transport rate of glucopyra...
AbstractWe present the results of a new NMR-based procedure for measuring the fast transmembrane exc...
AbstractWe present the results of a new NMR-based procedure for measuring the fast transmembrane exc...
The facilitative glucose transporter GLUT1 catalyzes the passive translocation of glucose across pla...
A generalizable 1H NMR technique is developed and used to monitor ß-D-glucose binding to glucose tra...
A generalizable 1H NMR technique is developed and used to monitor ß-D-glucose binding to glucose tra...
The general phenomenon of the transmembr ane 19F NMR chemical shift difference that arises with a nu...
The human glucose transporter GLUT1 is abundant in red blood cells, the blood-brain barrier and epit...
The human glucose transporter GLUT1 is abundant in red blood cells, the blood-brain barrier and epit...
The human glucose transporter GLUT1 is abundant in red blood cells, the blood-brain barrier and epit...
Nuclear magnetic resonance (NMR) spectroscopy was used to study exchange of three distinctly differe...
Nuclear magnetic resonance (NMR) spectroscopy was used to study exchange of three distinctly differe...
AbstractThe rate of exchange of urea across the membranes of human erythrocytes (red blood cells) wa...