Nonlinear stiffening is a ubiquitous property of major types of biopolymers that make up the extracellular matrices (ECM) including collagen, fibrin, and basement membrane. Within the ECM, many types of cells such as fibroblasts and cancer cells have a spindle-like shape that acts like two equal and opposite force monopoles, which anisotropically stretch their surroundings and locally stiffen the matrix. Here, we first use optical tweezers to study the nonlinear force–displacement response to localized monopole forces. We then propose an effective-probe scaling argument that a local point force application can induce a stiffened region in the matrix, which can be characterized by a nonlinear length scale R * that increases with the increasi...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
Bulk tissue stiffness has been correlated with regulation of cellular processes and conversely cells...
The mechanical interactions between Cells and Extracellular Matrix (ECM) play a central role in vari...
Animal cells in tissues are supported by biopolymer matrices, which typically exhibit highly nonline...
In a diversity of physiological contexts, eukaryotic cells adhere to an extracellular matrix (ECM), ...
Presented at the Symposium on Soft Matter Forefronts "Contributed Talks", April 19, 2018, from 2:00 ...
A network of semiflexible biopolymers, known as the cytoskeleton, and molecular motors play fundamen...
Most tissue cells grown in sparse cultures on linearly elastic substrates typically display a small,...
Dataset corresponding to the underlying numerical and experimental data of the research article "Loc...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
Despite their notorious diversity, biological cells are mechanically well characterized by only a fe...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
AbstractRecent observations suggest that cells on fibrous extracellular matrix materials sense mecha...
Biological cells sense and respond to mechanical forces, but how such a mechanosensing process takes...
When biological cells migrate, divide, and invade, they push and pull on individual fibers of the ma...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
Bulk tissue stiffness has been correlated with regulation of cellular processes and conversely cells...
The mechanical interactions between Cells and Extracellular Matrix (ECM) play a central role in vari...
Animal cells in tissues are supported by biopolymer matrices, which typically exhibit highly nonline...
In a diversity of physiological contexts, eukaryotic cells adhere to an extracellular matrix (ECM), ...
Presented at the Symposium on Soft Matter Forefronts "Contributed Talks", April 19, 2018, from 2:00 ...
A network of semiflexible biopolymers, known as the cytoskeleton, and molecular motors play fundamen...
Most tissue cells grown in sparse cultures on linearly elastic substrates typically display a small,...
Dataset corresponding to the underlying numerical and experimental data of the research article "Loc...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
Despite their notorious diversity, biological cells are mechanically well characterized by only a fe...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
AbstractRecent observations suggest that cells on fibrous extracellular matrix materials sense mecha...
Biological cells sense and respond to mechanical forces, but how such a mechanosensing process takes...
When biological cells migrate, divide, and invade, they push and pull on individual fibers of the ma...
The mechanical properties of the substrate upon which cells are cultured have been shown to influenc...
Bulk tissue stiffness has been correlated with regulation of cellular processes and conversely cells...
The mechanical interactions between Cells and Extracellular Matrix (ECM) play a central role in vari...