Nanomechanics of cytoskeleton is deeply involved in physiology and regulation of cell behavior. Atomic Force Microscopy has been extensively used for quantitative characterization with high-spatial resolution, in particular showing tremendous opportunities in biomechanics by quantifying mechanical parameters related to cytoskeleton organization. In this short review, we highlight recent developments in cell nanomechanics by AFM focusing on methodology and direct application to investigate cytoskeleton restructuration when cells are interacting with nanostructures (surfaces and nanoparticles). In particular, cells can sense the stiffness of environment or internalized particles and AFM can detect the rearrangement of cytoskeleton as one of t...
The emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the living...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
Cells in their native environment are bombarded by mechanical signals ranging from strains within a ...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
Cells are constantly exposed to mechanical stimuli in their environment and have several evolved mec...
AbstractBiology and cellular mechanics have benefited from recent technological advances in physics ...
Cells are constantly exposed to mechanical stimuli in their environment and have several evolved mec...
The advent of atomic force microscopy (AFM) provides a powerful tool for investigating the behaviors...
Biosensors are aimed at detecting tiny physical and chemical stimuli in biological systems. Physical...
Biosensors are aimed at detecting tiny physical and chemical stimuli in biological systems. Physical...
The advent of atomic force microscopy (AFM) provides a powerful tool for investigating the behaviors...
Atomic Force Microscopy (AFM) has a great potential as a tool to characterize me-chanical and morpho...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
Mechanical cues have been recognized to be critically important in the regulation of cells. A myriad...
The emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the living...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
Cells in their native environment are bombarded by mechanical signals ranging from strains within a ...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
Cells are constantly exposed to mechanical stimuli in their environment and have several evolved mec...
AbstractBiology and cellular mechanics have benefited from recent technological advances in physics ...
Cells are constantly exposed to mechanical stimuli in their environment and have several evolved mec...
The advent of atomic force microscopy (AFM) provides a powerful tool for investigating the behaviors...
Biosensors are aimed at detecting tiny physical and chemical stimuli in biological systems. Physical...
Biosensors are aimed at detecting tiny physical and chemical stimuli in biological systems. Physical...
The advent of atomic force microscopy (AFM) provides a powerful tool for investigating the behaviors...
Atomic Force Microscopy (AFM) has a great potential as a tool to characterize me-chanical and morpho...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
Mechanical cues have been recognized to be critically important in the regulation of cells. A myriad...
The emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the living...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
Cells in their native environment are bombarded by mechanical signals ranging from strains within a ...