Dynamically cross-linked semiflexible biopolymers such as the actin cytoskeleton govern the mechanical behavior of living cells. Semiflexible biopolymers nonlinearly stiffen in response to mechanical loads, whereas the cross-linker dynamics allow for stress relaxation over time. Here we show, through rheology and theoretical modeling, that the combined nonlinearity in time and stress leads to an unexpectedly slow stress relaxation, similar to the dynamics of disordered systems close to the glass transition. Our work suggests that transient cross-linking combined with internal stress can explain prior reports of soft glassy rheology of cells, in which the shear modulus increases weakly with frequency
Transiently cross linked networks of semiflexible filaments make up the principal structural compone...
A hallmark of biopolymer networks is their sensitivity to stress, reflected by pronounced nonlinear ...
Epithelial monolayers are one-cell-thick tissue sheets that line most of the body surfaces, separati...
Dynamically cross-linked semiflexible biopolymers such as the actin cytoskeleton govern the mechanic...
A long-standing puzzle in the rheology of living cells is the origin of the experimentally observed ...
The links between biomechanics and human diseases have been the subject of considerable scientific r...
The cytoskeleton (CSK) is a crowded network of structural proteins that stabilizes cell shape and dr...
Living cells are known to exhibit universal power-law rheological behaviors, but their underlying bi...
Despite their notorious diversity, biological cells are mechanically well characterized by only a fe...
Recent experiments show that networks of stiff biopolymers cross-linked by transient linker proteins...
We measure the linear viscoelasticity of sterically entangled and chemically cross-linked networks o...
A step stress deforming suspended cells causes a passive relaxation, due to a transiently cross-link...
The unique mechanical performance of animal cells and tissues is attributed mostly to their internal...
I use an integrated approach of experiments, theory, and numerical evaluations to show that stiffeni...
In dealing with systems as complex as the cytoskeleton, we need organizing principles or, short of t...
Transiently cross linked networks of semiflexible filaments make up the principal structural compone...
A hallmark of biopolymer networks is their sensitivity to stress, reflected by pronounced nonlinear ...
Epithelial monolayers are one-cell-thick tissue sheets that line most of the body surfaces, separati...
Dynamically cross-linked semiflexible biopolymers such as the actin cytoskeleton govern the mechanic...
A long-standing puzzle in the rheology of living cells is the origin of the experimentally observed ...
The links between biomechanics and human diseases have been the subject of considerable scientific r...
The cytoskeleton (CSK) is a crowded network of structural proteins that stabilizes cell shape and dr...
Living cells are known to exhibit universal power-law rheological behaviors, but their underlying bi...
Despite their notorious diversity, biological cells are mechanically well characterized by only a fe...
Recent experiments show that networks of stiff biopolymers cross-linked by transient linker proteins...
We measure the linear viscoelasticity of sterically entangled and chemically cross-linked networks o...
A step stress deforming suspended cells causes a passive relaxation, due to a transiently cross-link...
The unique mechanical performance of animal cells and tissues is attributed mostly to their internal...
I use an integrated approach of experiments, theory, and numerical evaluations to show that stiffeni...
In dealing with systems as complex as the cytoskeleton, we need organizing principles or, short of t...
Transiently cross linked networks of semiflexible filaments make up the principal structural compone...
A hallmark of biopolymer networks is their sensitivity to stress, reflected by pronounced nonlinear ...
Epithelial monolayers are one-cell-thick tissue sheets that line most of the body surfaces, separati...