We investigated the rheological properties of living human airway smooth muscle cells in culture and monitored the changes in rheological properties induced by exogenous stimuli. We oscillated small magnetic microbeads bound specifically to integrin receptors and computed the storage modulus (G') and loss modulus (G") from the applied torque and the resulting rotational motion of the beads as determined from their remanent magnetic field. Under baseline conditions, G' increased weakly with frequency, whereas G" was independent of the frequency. The cell was predominantly elastic, with the ratio of G" to G' (defined as eta) being ~0.35 at all frequencies. G' and G" increased together after contractile activation and decreased together after ...
It is well known that mechanical forces are crucial in regulating functions of every tissue and orga...
Microrheology, the study of fluids on micron length-scales, promises to reveal insights into cellula...
rity model hypothesizes that cytoskeleton-based microtu-bules (MTs) carry compression as they balanc...
We investigated the rheological properties of living human airway smooth muscle cells in culture and...
AbstractComplex rheology of airway smooth muscle cells and its dynamic response during contractile s...
A cell can be described as a complex viscoelastic material with structural relaxations that is modul...
Living biological cells are highly complex, multifunctional systems whose physical attributes are r...
Mechanical forces play a large role in biological processes. While individual cells are the basic un...
Abstract—Airway smoothmuscle cells exhibit stiffening during contractile activation. This stiffening...
We report a scaling law that governs both the elastic and frictional properties of a wide variety of...
We have investigated how extracellular matrix (ECM) alters the mechanical properties of the cytoskel...
Airway hyperresponsiveness is a cardinal feature of asthma but remains largely unexplained. In asthm...
Lung epithelial cells are subjected to large cyclic forces from breathing. However, their response t...
AbstractLung epithelial cells are subjected to large cyclic forces from breathing. However, their re...
Researchers have long sought to characterize and understand mammalian cells\u27 physical response to...
It is well known that mechanical forces are crucial in regulating functions of every tissue and orga...
Microrheology, the study of fluids on micron length-scales, promises to reveal insights into cellula...
rity model hypothesizes that cytoskeleton-based microtu-bules (MTs) carry compression as they balanc...
We investigated the rheological properties of living human airway smooth muscle cells in culture and...
AbstractComplex rheology of airway smooth muscle cells and its dynamic response during contractile s...
A cell can be described as a complex viscoelastic material with structural relaxations that is modul...
Living biological cells are highly complex, multifunctional systems whose physical attributes are r...
Mechanical forces play a large role in biological processes. While individual cells are the basic un...
Abstract—Airway smoothmuscle cells exhibit stiffening during contractile activation. This stiffening...
We report a scaling law that governs both the elastic and frictional properties of a wide variety of...
We have investigated how extracellular matrix (ECM) alters the mechanical properties of the cytoskel...
Airway hyperresponsiveness is a cardinal feature of asthma but remains largely unexplained. In asthm...
Lung epithelial cells are subjected to large cyclic forces from breathing. However, their response t...
AbstractLung epithelial cells are subjected to large cyclic forces from breathing. However, their re...
Researchers have long sought to characterize and understand mammalian cells\u27 physical response to...
It is well known that mechanical forces are crucial in regulating functions of every tissue and orga...
Microrheology, the study of fluids on micron length-scales, promises to reveal insights into cellula...
rity model hypothesizes that cytoskeleton-based microtu-bules (MTs) carry compression as they balanc...