Thin layers of gels with mechanical properties mimicking animal tissues are widely used to study the rigidity sensing of adherent animal cells and to measure forces applied by cells to their substrate with traction force microscopy. The gels are usually based on polyacrylamide and their elastic modulus is measured with an atomic force microscope (AFM). Here we present a simple microfluidic device that generates high shear stresses in a laminar flow above a gel-coated substrate and apply the device to gels with elastic moduli in a range from 0.4 to 300 kPa that are all prepared by mixing two components of a transparent commercial silicone Sylgard 184. The elastic modulus is measured by tracking beads on the gel surface under a wide-field flu...
The measurement of the elastic modulus of soft biomaterials via nanoindentation relies on the accura...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
A convenient technique is reported in this note for measuring elastic modulus of extremely soft mate...
Tissues in the human body are predominantly made of cells and the extracellular matrix (ECM). The el...
International audienceGels are a functional template for micro-particle fabrication and microbiology...
Growing interest in exploring mechanically mediated biological phenomena has resulted in cell cultur...
In conjunction with surface chemistry, the mechanical properties of cell culture substrates provide ...
There is growing interest in quantifying vascular cell and tissue stiffness. Most measurement approa...
The field of microfluidics has continued to grow steadily since its inception and proven indispensab...
Biological hydrogels are widely used as extracellular environment for encapsulating and growing cell...
International audienceWe present a procedure that allows a reliable determination of the elastic (Yo...
<p>Elastic modulus, <i>E</i>, of silicone gels prepared by mixing the base (B) and cross-linker (C) ...
Cell mechanical measurements are gaining increasing interest in biological and biomedical studies. H...
Soft hydrogels serving as substrates for cell attachment are used to culture many types of cells. Th...
The measurement of the elastic modulus of soft biomaterials via nanoindentation relies on the accura...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
A convenient technique is reported in this note for measuring elastic modulus of extremely soft mate...
Tissues in the human body are predominantly made of cells and the extracellular matrix (ECM). The el...
International audienceGels are a functional template for micro-particle fabrication and microbiology...
Growing interest in exploring mechanically mediated biological phenomena has resulted in cell cultur...
In conjunction with surface chemistry, the mechanical properties of cell culture substrates provide ...
There is growing interest in quantifying vascular cell and tissue stiffness. Most measurement approa...
The field of microfluidics has continued to grow steadily since its inception and proven indispensab...
Biological hydrogels are widely used as extracellular environment for encapsulating and growing cell...
International audienceWe present a procedure that allows a reliable determination of the elastic (Yo...
<p>Elastic modulus, <i>E</i>, of silicone gels prepared by mixing the base (B) and cross-linker (C) ...
Cell mechanical measurements are gaining increasing interest in biological and biomedical studies. H...
Soft hydrogels serving as substrates for cell attachment are used to culture many types of cells. Th...
The measurement of the elastic modulus of soft biomaterials via nanoindentation relies on the accura...
Methods for tuning extracellular matrix (ECM) mechanics in 3D cell culture that rely on increasing t...
A convenient technique is reported in this note for measuring elastic modulus of extremely soft mate...