As the indispensable oxygen-transporting cells, erythrocytes exhibit extreme deformability and amazing stability as they are subject to huge reversible shear stress and extrusion force during massive circulation in the body. The unique architecture of spectrin-actin-based membrane-skeleton is considered to be responsible for such excellent mechanical properties of erythrocytes. Although erythrocytes have been recognized for more than 300 years, myriad questions about membrane-skeleton constantly attract people’s attention. Here, we summarize the kinds of distinctive single-cell and single-molecule techniques that were used to investigate the structure and function of erythrocyte membrane-skeleton at macro and micro levels
Cells exhibit a wide diversity of shapes and are subjected to constant remodeling, allowing for thei...
Spectrin levels in erythrocytes have been related to several biomechanical and biophysical membrane ...
The erythrocyte membrane has been extensively studied, both as a model membrane system and to invest...
International audienceThe erythrocyte membrane, a metabolically regulated active structure that comp...
Physical studies of human erythrocyte spectrin indicate that isolated spectrin dimers and tetramers ...
The erythrocyte membrane provides a fundamental model from which the molecular organization of more ...
© 2010 – IOS Press and the authors. All rights reservedIn the sixties and seventies, erythrocytes or...
Erythrocytes transport oxygen from the lungs to the tissues. The excess surface area together with t...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
The unique biconcave disc shape of the human erythrocyte is believed to be due to the special proper...
A cell is the fundamental unit of living things. All cells are encapsulated by a phospholipid bilaye...
AbstractThe structure of the membrane skeleton on the cytoplasmic surface of the erythrocyte plasma ...
The molecular basis for the elasticity of the human erythrocyte membrane was explored. Skeletons wer...
AbstractErythrocytes possess a spectrin-based cytoskeleton that provides elasticity and mechanical s...
The role of the membrane skeleton in determining the shape of the human red cell was probed by weake...
Cells exhibit a wide diversity of shapes and are subjected to constant remodeling, allowing for thei...
Spectrin levels in erythrocytes have been related to several biomechanical and biophysical membrane ...
The erythrocyte membrane has been extensively studied, both as a model membrane system and to invest...
International audienceThe erythrocyte membrane, a metabolically regulated active structure that comp...
Physical studies of human erythrocyte spectrin indicate that isolated spectrin dimers and tetramers ...
The erythrocyte membrane provides a fundamental model from which the molecular organization of more ...
© 2010 – IOS Press and the authors. All rights reservedIn the sixties and seventies, erythrocytes or...
Erythrocytes transport oxygen from the lungs to the tissues. The excess surface area together with t...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
The unique biconcave disc shape of the human erythrocyte is believed to be due to the special proper...
A cell is the fundamental unit of living things. All cells are encapsulated by a phospholipid bilaye...
AbstractThe structure of the membrane skeleton on the cytoplasmic surface of the erythrocyte plasma ...
The molecular basis for the elasticity of the human erythrocyte membrane was explored. Skeletons wer...
AbstractErythrocytes possess a spectrin-based cytoskeleton that provides elasticity and mechanical s...
The role of the membrane skeleton in determining the shape of the human red cell was probed by weake...
Cells exhibit a wide diversity of shapes and are subjected to constant remodeling, allowing for thei...
Spectrin levels in erythrocytes have been related to several biomechanical and biophysical membrane ...
The erythrocyte membrane has been extensively studied, both as a model membrane system and to invest...