Atomic force microscopy (AFM) provides a means for characterizing the surface topography and biophysical properties of individual living cells under near-physiological conditions. However, owing to the lack of adequate cellular immobilization methods, AFM imaging of living, suspended mammalian cells is still a big challenge. In this paper, a method is presented for immobilizing individual living B lymphoma cells that combines mechanical trapping with pillar arrays and electrostatic adsorption with poly-L-lysine. In this way, the topography and elasticity changes of individual B lymphoma cells that were stimulated with different concentrations of Rituximab were observed and measured dynamically. When the cell is stimulated by 0.2 mg·mL -1 Ri...
Mechanical properties play an important role in regulating cellular activities and are critical for ...
Cancer is now responsible for the major leading cause of death worldwide. The late diagnosis of canc...
The quantitative analysis of biomechanical profiles at the single-cell level can provide additional ...
Atomic force microscopy(AFM) provides a means for characterizing the surface topography and biophysi...
Due to the particular imaging mode, atomic force microscopy (AFM) provides a new technology for char...
The topography and mechanical properties of single B-lymphoma cells have been investigated by atomic...
The invention of atomic force microscopy (AFM) provides new technology for investigating the physiol...
Summary Atomic force microscopy (AFM) provides a new technology to visualize the cellular topography...
Atomic force microscopy (AFM) has proven to be a powerful tool for imaging the topographic propertie...
Cell stiffness is closely related to human health and diseases. Measuring the mechanical property of...
Illuminating the underlying mechanism of drug action at single-cell and single-molecule levels is of...
We report the use of Atomic Force Microcopy (AFM) in combination with Fluorescence Microscopy (FM) f...
Non-Hodgkin's lymphoma (NHL) is the most common adult hematological cancer. With the advent of c...
The applications of targeted drugs in treating cancers have significantly improved the survival rate...
The applications of targeted drugs in treating cancers have significantly improved the survival rate...
Mechanical properties play an important role in regulating cellular activities and are critical for ...
Cancer is now responsible for the major leading cause of death worldwide. The late diagnosis of canc...
The quantitative analysis of biomechanical profiles at the single-cell level can provide additional ...
Atomic force microscopy(AFM) provides a means for characterizing the surface topography and biophysi...
Due to the particular imaging mode, atomic force microscopy (AFM) provides a new technology for char...
The topography and mechanical properties of single B-lymphoma cells have been investigated by atomic...
The invention of atomic force microscopy (AFM) provides new technology for investigating the physiol...
Summary Atomic force microscopy (AFM) provides a new technology to visualize the cellular topography...
Atomic force microscopy (AFM) has proven to be a powerful tool for imaging the topographic propertie...
Cell stiffness is closely related to human health and diseases. Measuring the mechanical property of...
Illuminating the underlying mechanism of drug action at single-cell and single-molecule levels is of...
We report the use of Atomic Force Microcopy (AFM) in combination with Fluorescence Microscopy (FM) f...
Non-Hodgkin's lymphoma (NHL) is the most common adult hematological cancer. With the advent of c...
The applications of targeted drugs in treating cancers have significantly improved the survival rate...
The applications of targeted drugs in treating cancers have significantly improved the survival rate...
Mechanical properties play an important role in regulating cellular activities and are critical for ...
Cancer is now responsible for the major leading cause of death worldwide. The late diagnosis of canc...
The quantitative analysis of biomechanical profiles at the single-cell level can provide additional ...