AbstractErythrocytes possess a spectrin-based cytoskeleton that provides elasticity and mechanical stability necessary to survive the shear forces within the microvasculature. The architecture of this membrane skeleton and the nature of its intermolecular contacts determine the mechanical properties of the skeleton and confer the characteristic biconcave shape of red cells. We have used cryo-electron tomography to evaluate the three-dimensional topology in intact, unexpanded membrane skeletons from mouse erythrocytes frozen in physiological buffer. The tomograms reveal a complex network of spectrin filaments converging at actin-based nodes and a gradual decrease in both the density and the thickness of the network from the center to the edg...
Physical studies of human erythrocyte spectrin indicate that isolated spectrin dimers and tetramers ...
The role of the membrane skeleton in determining the shape of the human red cell was probed by weake...
AbstractThe erythrocyte's spectrin–actin membrane skeleton is directly shown to be capable of sustai...
AbstractErythrocytes possess a spectrin-based cytoskeleton that provides elasticity and mechanical s...
AbstractWe present a three-dimensional computational study of whole-cell equilibrium shape and defor...
Summary: The erythrocyte cytoskeleton is a textbook prototype for the submembrane cytoskeleton of me...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
AbstractThe area expansion and the shear moduli of the free spectrin skeleton, freshly extracted fro...
We simulate deformable red blood cells in the microcirculation using the immersed boundary method wi...
We simulate deformable red blood cells in the microcirculation using the immersed boundary method wi...
A finite-element network model is used to investigate the influence of the topology of the red blood...
International audienceThe erythrocyte membrane, a metabolically regulated active structure that comp...
AbstractThe structure of the membrane skeleton on the cytoplasmic surface of the erythrocyte plasma ...
AbstractWe have used an ultrasensitive force probe and optical interferometry to examine the thickne...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
Physical studies of human erythrocyte spectrin indicate that isolated spectrin dimers and tetramers ...
The role of the membrane skeleton in determining the shape of the human red cell was probed by weake...
AbstractThe erythrocyte's spectrin–actin membrane skeleton is directly shown to be capable of sustai...
AbstractErythrocytes possess a spectrin-based cytoskeleton that provides elasticity and mechanical s...
AbstractWe present a three-dimensional computational study of whole-cell equilibrium shape and defor...
Summary: The erythrocyte cytoskeleton is a textbook prototype for the submembrane cytoskeleton of me...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
AbstractThe area expansion and the shear moduli of the free spectrin skeleton, freshly extracted fro...
We simulate deformable red blood cells in the microcirculation using the immersed boundary method wi...
We simulate deformable red blood cells in the microcirculation using the immersed boundary method wi...
A finite-element network model is used to investigate the influence of the topology of the red blood...
International audienceThe erythrocyte membrane, a metabolically regulated active structure that comp...
AbstractThe structure of the membrane skeleton on the cytoplasmic surface of the erythrocyte plasma ...
AbstractWe have used an ultrasensitive force probe and optical interferometry to examine the thickne...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
Physical studies of human erythrocyte spectrin indicate that isolated spectrin dimers and tetramers ...
The role of the membrane skeleton in determining the shape of the human red cell was probed by weake...
AbstractThe erythrocyte's spectrin–actin membrane skeleton is directly shown to be capable of sustai...