Precise manipulation of nanometer-sized magnetic particles using magnetic tweezers has yielded insights into the rheology of the cell cytoplasm. We present first results using this approach to study the nanomechanics of the cell nucleus. Using a custom-designed micro-magnetic-tweezers instrument, we can achieve sufficiently high magnetic forces enabling the application and measurement of controlled distortion of the internal nuclear structure on the nanometer scale. We precisely measure the elasticity and viscosity inside the nucleus of living HeLa cells. The high value of the Young's modulus (Y = 2.5 x 10(2) Pa) measured relative to the cytoplasm is explained by a large-scale model for in vivo chromatin structure using a polymer network mo...
During growth, differentiation and migration of cells, the nucleus changes size and shape, while enc...
AbstractWe measured the viscoelastic properties of the cytoplasm of J774 macrophages with a recently...
AbstractA combined approach of 2D high-resolution localization light microscopy and statistical meth...
Precise manipulation of nanometer-sized magnetic particles using magnetic tweezers has yielded insig...
Magnetic tweezers are widely used for manipulating small magnetic beads inside the cell cytoplasm in...
Magnetic tweezers are widely used for manipulating small magnetic beads inside the cell cytoplasm in...
International audienceOur understanding of the physical principles organizing the genome in the nucl...
Our understanding of the physical principles organizing the genome in the nucleus is limited by the ...
International audienceOur understanding of the physical principles organizing the genome in the nucl...
AbstractThe organization of chromatin in the cell nucleus is crucial for gene expression regulation....
AbstractThe organization of chromatin in the cell nucleus is crucial for gene expression regulation....
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
Cell nuclei experience and respond to a wide range of forces, both in vivo and in vitro. In order to...
The magnetic tweezer technique has become a versatile tool for unfolding or folding of individual mo...
During growth, differentiation and migration of cells, the nucleus changes size and shape, while enc...
AbstractWe measured the viscoelastic properties of the cytoplasm of J774 macrophages with a recently...
AbstractA combined approach of 2D high-resolution localization light microscopy and statistical meth...
Precise manipulation of nanometer-sized magnetic particles using magnetic tweezers has yielded insig...
Magnetic tweezers are widely used for manipulating small magnetic beads inside the cell cytoplasm in...
Magnetic tweezers are widely used for manipulating small magnetic beads inside the cell cytoplasm in...
International audienceOur understanding of the physical principles organizing the genome in the nucl...
Our understanding of the physical principles organizing the genome in the nucleus is limited by the ...
International audienceOur understanding of the physical principles organizing the genome in the nucl...
AbstractThe organization of chromatin in the cell nucleus is crucial for gene expression regulation....
AbstractThe organization of chromatin in the cell nucleus is crucial for gene expression regulation....
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
Mechanosensing of the mechanical microenvironment by cells regulates cell phenotype and function. Th...
Cell nuclei experience and respond to a wide range of forces, both in vivo and in vitro. In order to...
The magnetic tweezer technique has become a versatile tool for unfolding or folding of individual mo...
During growth, differentiation and migration of cells, the nucleus changes size and shape, while enc...
AbstractWe measured the viscoelastic properties of the cytoplasm of J774 macrophages with a recently...
AbstractA combined approach of 2D high-resolution localization light microscopy and statistical meth...