International audiencePrecise localization and biophysical characterization of cellular structures is a key to the understanding of biological processes happening both inside the cell and at the cell surface. Atomic force microscopy is a powerful tool to study the cell surface – topography, elasticity, viscosity, interactions – and also the viscoelastic behavior of the underlying cytoplasm, cytoskeleton or the nucleus. Here, we demonstrate the ability of atomic force microscopy to also map and characterize organelles and microorganisms inside cells, at the nanoscale, by combining stiffness tomography with super-resolution fluorescence and electron microscopy. By using this correlative approach, we could both identify and characterize intrac...
Single microbial cells can show important local variations of elasticity due to the complex, anisotr...
The function of cells is strongly determined by the properties of their extracellular microenvironme...
The Atomic Force Microscope (AFM) is a key instrument for mapping quantitatively the local mechanica...
Stiffness tomography is a new atomic force microscopy imaging technique that allows highlighting str...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The atomic force microscope is a convenient tool to probe living samples at the nanometric scale. Am...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
AbstractThe atomic force microscope is a convenient tool to probe living samples at the nanometric s...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
The atomic force microscope is a convenient tool to probe living samples at the nanometric scale. Am...
Mechanical stress affects and regulates many aspects of the cell, including morphology, growth, diff...
The cytoskeleton controls cellular morphology and mediates the mechanical interactions between a cel...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
Nanomechanics of cytoskeleton is deeply involved in physiology and regulation of cell behavior. Atom...
Single microbial cells can show important local variations of elasticity due to the complex, anisotr...
The function of cells is strongly determined by the properties of their extracellular microenvironme...
The Atomic Force Microscope (AFM) is a key instrument for mapping quantitatively the local mechanica...
Stiffness tomography is a new atomic force microscopy imaging technique that allows highlighting str...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The atomic force microscope is a convenient tool to probe living samples at the nanometric scale. Am...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
AbstractThe atomic force microscope is a convenient tool to probe living samples at the nanometric s...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
The atomic force microscope is a convenient tool to probe living samples at the nanometric scale. Am...
Mechanical stress affects and regulates many aspects of the cell, including morphology, growth, diff...
The cytoskeleton controls cellular morphology and mediates the mechanical interactions between a cel...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
Nanomechanics of cytoskeleton is deeply involved in physiology and regulation of cell behavior. Atom...
Single microbial cells can show important local variations of elasticity due to the complex, anisotr...
The function of cells is strongly determined by the properties of their extracellular microenvironme...
The Atomic Force Microscope (AFM) is a key instrument for mapping quantitatively the local mechanica...