The surface topography of red blood cells (RBCs) was investigated under nearphysiological conditions using atomic force microscopy (AFM). An immobilization protocol was established where RBCs are coupled via molecular bonds of the membrane glycoproteins to wheat germ agglutinin (WGA), which is covalently and flexibly tethered to the support. This results in a tight but noninvasive attachment of the cells. Using tappingmode AFM, which is known as gentle imaging mode and therefore most appropriate for soft biological samples like erythrocytes, it was possible to resolve membrane skeleton structures without major distortions or deformations of the cell surface. Significant differences in the morphology of RBCs from healthy humans and patients ...
The inflammatory burden of the complex rheumatoid arthritis (RA) disease affects several organ-syste...
Mechanical properties play an important role in regulating cellular activities and are critical for ...
Red blood cells feature remarkable mechanical properties while navigating through microcirculation v...
The surface topography of red blood cells (RBCs) was investigated under nearphysiological conditions...
AbstractSince its invention in the mid 1980s atomic force microscopy has revolutionised the way in w...
Glutaraldehyde-fixed red blood cells were imaged by tapping mode atomic force microscopy (TMAFM) in ...
AbstractA novel approach to the study of RBCs based on the collection of three-dimensional high-reso...
A novel approach to the study of RBCs based on the collection of three-dimensional high-resolution A...
International audienceSickle cell disease (SCD) is the most frequent genetic disease in the West Ind...
Currently, much research is devoted to the study of biological objects using atomic force microscopy...
© 2017 The Author(s). Background: Red blood cells (RBCs) deform significantly and repeatedly when pa...
The biomechanical properties of red blood cells (RBCs), including increased stiffness and abnormal c...
Based on the multimodal characterization of human red blood cells (RBCs), the link between the stora...
AbstractThe structure of the membrane skeleton on the cytoplasmic surface of the erythrocyte plasma ...
With atomic force microscopy (AFM) a sharp tip is scanned over a surface. By using an optical deecti...
The inflammatory burden of the complex rheumatoid arthritis (RA) disease affects several organ-syste...
Mechanical properties play an important role in regulating cellular activities and are critical for ...
Red blood cells feature remarkable mechanical properties while navigating through microcirculation v...
The surface topography of red blood cells (RBCs) was investigated under nearphysiological conditions...
AbstractSince its invention in the mid 1980s atomic force microscopy has revolutionised the way in w...
Glutaraldehyde-fixed red blood cells were imaged by tapping mode atomic force microscopy (TMAFM) in ...
AbstractA novel approach to the study of RBCs based on the collection of three-dimensional high-reso...
A novel approach to the study of RBCs based on the collection of three-dimensional high-resolution A...
International audienceSickle cell disease (SCD) is the most frequent genetic disease in the West Ind...
Currently, much research is devoted to the study of biological objects using atomic force microscopy...
© 2017 The Author(s). Background: Red blood cells (RBCs) deform significantly and repeatedly when pa...
The biomechanical properties of red blood cells (RBCs), including increased stiffness and abnormal c...
Based on the multimodal characterization of human red blood cells (RBCs), the link between the stora...
AbstractThe structure of the membrane skeleton on the cytoplasmic surface of the erythrocyte plasma ...
With atomic force microscopy (AFM) a sharp tip is scanned over a surface. By using an optical deecti...
The inflammatory burden of the complex rheumatoid arthritis (RA) disease affects several organ-syste...
Mechanical properties play an important role in regulating cellular activities and are critical for ...
Red blood cells feature remarkable mechanical properties while navigating through microcirculation v...