AbstractThe electrostatic properties of biological membranes can be described by three parameters: the transmembrane potential, the membrane surface potential, and the membrane dipole potential. The first two are well characterized in terms of their magnitudes and biological effects. The dipole potential, however, is not well characterized. Various methods to measure the membrane dipole potential indirectly yield different values, and there is not even agreement on the source of the membrane dipole moment. This ambiguity impedes investigations into the biological effects of the membrane dipole moment, which should be substantial considering the large interfacial fields with which it is associated. Electrostatic analysis of phosphatidylcholi...
Zeta potential and dipole potential measures are direct operational methodologies to determine the a...
AbstractThe dipole potential of lipid bilayer membrane controls the difference in permeability of th...
ABSTRACT The nanomechanical response of supported lipid bilayers has been studied by force spectrosc...
AbstractThe electrostatic properties of biological membranes can be described by three parameters: t...
The electrostatic properties of lipid bilayer membranes play a significant role in many biological p...
AbstractThe atomic force microscope (AFM) is sensitive to electric double layer interactions in elec...
The electrostatic potentials associated with cell membranes include the transmembrane potential (del...
AbstractA fluorescent ratio method utilizing styrylpyridinium dyes has recently been suggested for t...
We present what is, to our knowledge, the first experimental demonstration of dielectric constant me...
AbstractThe nanomechanical response of supported lipid bilayers has been studied by force spectrosco...
The binding and translocation rates of hydrophobic cation and anion spin labels were measured in uni...
Interaction forces and topography of mixed phospholipid-glycolipid bilayers were investigated by ato...
Recent advances in biomolecular design require accurate measurements performed in native or near-nat...
Nowadays, there is much experimental evidence that the mechanical properties of biological membranes...
AbstractRatiometric imaging of styryl potentiometric dyes can be used to measure the potential gradi...
Zeta potential and dipole potential measures are direct operational methodologies to determine the a...
AbstractThe dipole potential of lipid bilayer membrane controls the difference in permeability of th...
ABSTRACT The nanomechanical response of supported lipid bilayers has been studied by force spectrosc...
AbstractThe electrostatic properties of biological membranes can be described by three parameters: t...
The electrostatic properties of lipid bilayer membranes play a significant role in many biological p...
AbstractThe atomic force microscope (AFM) is sensitive to electric double layer interactions in elec...
The electrostatic potentials associated with cell membranes include the transmembrane potential (del...
AbstractA fluorescent ratio method utilizing styrylpyridinium dyes has recently been suggested for t...
We present what is, to our knowledge, the first experimental demonstration of dielectric constant me...
AbstractThe nanomechanical response of supported lipid bilayers has been studied by force spectrosco...
The binding and translocation rates of hydrophobic cation and anion spin labels were measured in uni...
Interaction forces and topography of mixed phospholipid-glycolipid bilayers were investigated by ato...
Recent advances in biomolecular design require accurate measurements performed in native or near-nat...
Nowadays, there is much experimental evidence that the mechanical properties of biological membranes...
AbstractRatiometric imaging of styryl potentiometric dyes can be used to measure the potential gradi...
Zeta potential and dipole potential measures are direct operational methodologies to determine the a...
AbstractThe dipole potential of lipid bilayer membrane controls the difference in permeability of th...
ABSTRACT The nanomechanical response of supported lipid bilayers has been studied by force spectrosc...