AbstractThe structure of the membrane skeleton on the cytoplasmic surface of the erythrocyte plasma membrane was observed in dried human erythrocyte ghosts by atomic force microscopy (AFM), taking advantage of its high sensitivity to small height variations in surfaces. The majority of the membrane skeleton can be imaged, even on the extracellular surface of the membrane. Various fixation and drying methods were examined for preparation of ghost membrane samples for AFM observation, and it was found that freeze-drying (freezing by rapid immersion in a cryogen) of unfixed specimens was a fast and simple way to obtain consistently good results for observation without removing the membrane or extending the membrane skeleton. Observation of the...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
Red blood cells feature remarkable mechanical properties while navigating through microcirculation v...
Glutaraldehyde-fixed red blood cells were imaged by tapping mode atomic force microscopy (TMAFM) in ...
ABSTRACT The structure of the membrane skeleton on the cytoplasmic surface of the erythrocyte plasma...
AbstractSince its invention in the mid 1980s atomic force microscopy has revolutionised the way in w...
International audienceThe erythrocyte membrane, a metabolically regulated active structure that comp...
AbstractErythrocytes possess a spectrin-based cytoskeleton that provides elasticity and mechanical s...
The nanomechanical characteristics of the membrane cytoskeleton of human erythrocytes were studied u...
AbstractErythrocyte membranes have been particularly useful as a model for studies of membrane struc...
As the indispensable oxygen-transporting cells, erythrocytes exhibit extreme deformability and amazi...
Studies of cell membrane structure by atomic force microscopy (AFM) have been limited because of the...
The surface topography of red blood cells (RBCs) was investigated under nearphysiological conditions...
It has been proposed that diffusion in the plasma membrane of eukaryotic cells it is compartmentaliz...
The molecular basis for the elasticity of the human erythrocyte membrane was explored. Skeletons wer...
Cell membranes play a key role in cellular activities. Fish erythrocytes, prototype of the nucleated...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
Red blood cells feature remarkable mechanical properties while navigating through microcirculation v...
Glutaraldehyde-fixed red blood cells were imaged by tapping mode atomic force microscopy (TMAFM) in ...
ABSTRACT The structure of the membrane skeleton on the cytoplasmic surface of the erythrocyte plasma...
AbstractSince its invention in the mid 1980s atomic force microscopy has revolutionised the way in w...
International audienceThe erythrocyte membrane, a metabolically regulated active structure that comp...
AbstractErythrocytes possess a spectrin-based cytoskeleton that provides elasticity and mechanical s...
The nanomechanical characteristics of the membrane cytoskeleton of human erythrocytes were studied u...
AbstractErythrocyte membranes have been particularly useful as a model for studies of membrane struc...
As the indispensable oxygen-transporting cells, erythrocytes exhibit extreme deformability and amazi...
Studies of cell membrane structure by atomic force microscopy (AFM) have been limited because of the...
The surface topography of red blood cells (RBCs) was investigated under nearphysiological conditions...
It has been proposed that diffusion in the plasma membrane of eukaryotic cells it is compartmentaliz...
The molecular basis for the elasticity of the human erythrocyte membrane was explored. Skeletons wer...
Cell membranes play a key role in cellular activities. Fish erythrocytes, prototype of the nucleated...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
Red blood cells feature remarkable mechanical properties while navigating through microcirculation v...
Glutaraldehyde-fixed red blood cells were imaged by tapping mode atomic force microscopy (TMAFM) in ...