Human red blood cells (RBCs) lack the actin-myosin-microtubule cytoskeleton that is responsible for shape changes in other cells. Nevertheless, they can display highly dynamic local deformations in response to external perturbations, such as those that occur during the process of apical alignment preceding merozoite invasion in malaria. Moreover, after lysis in divalent cation-free media, the isolated membranes of ruptured ghosts show spontaneous inside-out curling motions at the free edges of the lytic hole, leading to inside-out vesiculation. The molecular mechanisms that drive these rapid shape changes are unknown. Here, we propose a molecular model in which the spectrin filaments of the RBC cortical cytoskeleton control the sign and dyn...
The biconcave disk shape and deformability of mammalian RBCs rely on the membrane skeleton, a viscoe...
The surface of animal cells is a thin layer composed of a lipid bilayer and a cytoskeleton. Cells co...
BACKGROUND: The mechanical, rheological and shape properties of red blood cells are determined by th...
AbstractHuman red blood cells (RBCs) lack the actin-myosin-microtubule cytoskeleton that is responsi...
Abstract We present mathematical simulations of shapes of red blood cells (RBCs) and their cytoskele...
The biconcave disk shape of the mammalian red blood cell (RBC) is unique to the RBC and is vital for...
The biconcave disk shape of the mammalian red blood cell (RBC) is unique to the RBC and is vital for...
AbstractWe show theoretically how adenosine 5′-triphosphate (ATP)-induced dynamic dissociations of s...
AbstractThe functions and elasticities of the cell are largely related to the structures of the cyto...
AbstractErythrocytes are flexible cells specialized in the systemic transport of oxygen in vertebrat...
To dynamically reshape the membrane, cells rely on a variety of intracellular mechanisms, ranging fr...
Morphological transformations of living cells, such as shape adaptation to external stimuli, blebbin...
Red blood cell (RBC) shape and deformability are supported by a planar network of short actin filame...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
The molecular organization of the membrane of the red blood cell controls cell morphology and functi...
The biconcave disk shape and deformability of mammalian RBCs rely on the membrane skeleton, a viscoe...
The surface of animal cells is a thin layer composed of a lipid bilayer and a cytoskeleton. Cells co...
BACKGROUND: The mechanical, rheological and shape properties of red blood cells are determined by th...
AbstractHuman red blood cells (RBCs) lack the actin-myosin-microtubule cytoskeleton that is responsi...
Abstract We present mathematical simulations of shapes of red blood cells (RBCs) and their cytoskele...
The biconcave disk shape of the mammalian red blood cell (RBC) is unique to the RBC and is vital for...
The biconcave disk shape of the mammalian red blood cell (RBC) is unique to the RBC and is vital for...
AbstractWe show theoretically how adenosine 5′-triphosphate (ATP)-induced dynamic dissociations of s...
AbstractThe functions and elasticities of the cell are largely related to the structures of the cyto...
AbstractErythrocytes are flexible cells specialized in the systemic transport of oxygen in vertebrat...
To dynamically reshape the membrane, cells rely on a variety of intracellular mechanisms, ranging fr...
Morphological transformations of living cells, such as shape adaptation to external stimuli, blebbin...
Red blood cell (RBC) shape and deformability are supported by a planar network of short actin filame...
We studied the structure and elasticity of membrane skeletons from human red blood cells (RBCs) duri...
The molecular organization of the membrane of the red blood cell controls cell morphology and functi...
The biconcave disk shape and deformability of mammalian RBCs rely on the membrane skeleton, a viscoe...
The surface of animal cells is a thin layer composed of a lipid bilayer and a cytoskeleton. Cells co...
BACKGROUND: The mechanical, rheological and shape properties of red blood cells are determined by th...