International audienceThe mechanical properties of the cell nucleus are increasingly recognized as critical in many biological processes. The deformability of the nucleus determines the ability of immune and cancer cells to migrate through tissues and across endothelial cell layers, and changes to the mechanical properties of the nucleus can serve as novel biomarkers in processes such as cancer progression and stem cell differentiation. However, current techniques to measure the viscoelastic nuclear mechanical properties are often time consuming, limited to probing one cell at a time, or require expensive, highly specialized equipment. Furthermore, many current assays do not measure time-dependent properties, which are characteristic of vis...
The cell nucleus is constantly subjected to externally applied forces. During metazoan evolution, th...
International audienceNumerous cell functions are accompanied by phenotypic changes in viscoelastic ...
Cells are complex, viscoelastic materials that undergo changes in their mechanical phenotype, or ‘me...
International audienceThe mechanical properties of the cell nucleus are increasingly recognized as c...
International audienceThe mechanical properties of the cell nucleus are increasingly recognized as c...
Cell nuclei experience and respond to a wide range of forces, both in vivo and in vitro. In order to...
The cell nucleus plays a critical role in mechanosensing and mechanotransduction processes, by adapt...
The quantification of cellular mechanical properties is of tremendous interest in biology and medici...
Lamin A/C is a well-established key contributor to nuclear stiffness and its role in nucleus mechani...
Cancer is a heterogeneous disease and the number of cancer deaths are rising. To know more about it ...
The mechanical properties of cells provide valuable information regarding biological and clinically ...
Here we detail the design, fabrication, and use of a microfluidic device to evaluate the deformabili...
Biomarkers are intended to provide critical information to characterize the type/severity of the can...
Summary: Lamin A/C is a well-established key contributor to nuclear stiffness and its role in nucleu...
The cell nucleus is constantly subjected to externally applied forces. During metazoan evolution, th...
International audienceNumerous cell functions are accompanied by phenotypic changes in viscoelastic ...
Cells are complex, viscoelastic materials that undergo changes in their mechanical phenotype, or ‘me...
International audienceThe mechanical properties of the cell nucleus are increasingly recognized as c...
International audienceThe mechanical properties of the cell nucleus are increasingly recognized as c...
Cell nuclei experience and respond to a wide range of forces, both in vivo and in vitro. In order to...
The cell nucleus plays a critical role in mechanosensing and mechanotransduction processes, by adapt...
The quantification of cellular mechanical properties is of tremendous interest in biology and medici...
Lamin A/C is a well-established key contributor to nuclear stiffness and its role in nucleus mechani...
Cancer is a heterogeneous disease and the number of cancer deaths are rising. To know more about it ...
The mechanical properties of cells provide valuable information regarding biological and clinically ...
Here we detail the design, fabrication, and use of a microfluidic device to evaluate the deformabili...
Biomarkers are intended to provide critical information to characterize the type/severity of the can...
Summary: Lamin A/C is a well-established key contributor to nuclear stiffness and its role in nucleu...
The cell nucleus is constantly subjected to externally applied forces. During metazoan evolution, th...
International audienceNumerous cell functions are accompanied by phenotypic changes in viscoelastic ...
Cells are complex, viscoelastic materials that undergo changes in their mechanical phenotype, or ‘me...