The simultaneous determination of adhesion and deformability parameters of erythrocytes was carried out through a microfluidic device, which uses an inverted optical microscope with new image acquisition and analysis technologies. Also, an update of the models describing erythrocyte adhesion and deformation was proposed. Measurements were carried out with red blood cells suspended in saline solution with human serum albumin at different concentrations. Erythrocytes adhered to a glass surface were subjected to different low shear stress (from 0.04 to 0.25 Pa), causing cellular deformation and dissociation. The maximum value obtained of the erythrocyte deformability index was 0.3, and that of the adhesion energy per unit area was 1.1 × 10-6 P...
Red blood cells (RBCs) perform essential functions in human body, such as gas exchange between blood...
Increased red blood cell adherence to endothelial cells has been found in diseases including sickle...
The study of the erythrocyte morphology, interaction, and dynamics is essential to understand how se...
The simultaneous determination of adhesion and deformability parameters of erythrocytes was carried ...
It is now widely recognised that the deformability of erythrocyte membranes determines the rheologic...
Red blood cells (RBC) are known to form aggregates in the form of rouleaux due to the presence of pl...
Erythrocytes deformation is one of the exciting properties of erythrocytes. It is still under invest...
The mechanism of interaction involved in cell-cell adhesion has significant implications in biologic...
Human Red Blood Cells (RBC) undergo several physicochemical changes, in the course of their life spa...
AbstractWe investigated the mechanical strength of adhesion and the dynamics of unbinding of red blo...
Red blood cells can adhere to a solid surface by means of adhesion molecules that can be linked to e...
ABSTRACT We investigated the mechanical strength of adhesion and the dynamics of unbinding of red bl...
The nanomechanical characteristics of the membrane cytoskeleton of human erythrocytes were studied u...
The study of the erythrocyte morphology, interaction, and dynamics is essential to understand how se...
In dependence on the ambient conditions, red blood cells tend to form aggregates. In this work two d...
Red blood cells (RBCs) perform essential functions in human body, such as gas exchange between blood...
Increased red blood cell adherence to endothelial cells has been found in diseases including sickle...
The study of the erythrocyte morphology, interaction, and dynamics is essential to understand how se...
The simultaneous determination of adhesion and deformability parameters of erythrocytes was carried ...
It is now widely recognised that the deformability of erythrocyte membranes determines the rheologic...
Red blood cells (RBC) are known to form aggregates in the form of rouleaux due to the presence of pl...
Erythrocytes deformation is one of the exciting properties of erythrocytes. It is still under invest...
The mechanism of interaction involved in cell-cell adhesion has significant implications in biologic...
Human Red Blood Cells (RBC) undergo several physicochemical changes, in the course of their life spa...
AbstractWe investigated the mechanical strength of adhesion and the dynamics of unbinding of red blo...
Red blood cells can adhere to a solid surface by means of adhesion molecules that can be linked to e...
ABSTRACT We investigated the mechanical strength of adhesion and the dynamics of unbinding of red bl...
The nanomechanical characteristics of the membrane cytoskeleton of human erythrocytes were studied u...
The study of the erythrocyte morphology, interaction, and dynamics is essential to understand how se...
In dependence on the ambient conditions, red blood cells tend to form aggregates. In this work two d...
Red blood cells (RBCs) perform essential functions in human body, such as gas exchange between blood...
Increased red blood cell adherence to endothelial cells has been found in diseases including sickle...
The study of the erythrocyte morphology, interaction, and dynamics is essential to understand how se...