Optical tracking in vivo experiments reveal that diffusion of particles in biological cells is strongly enhanced in the presence of ATP and the experimental data for animal cells could previously be reproduced within a phenomenological model of a gel with myosin motors acting within it (Fodor É. et al., EPL, 110 (2015) 48005). Here, the two-fluid model of a gel is considered where active macromolecules, described as force dipoles, cyclically operate both in the elastic and the fluid components. Through coarse-graining, effective equations of motions for idealized tracer particles displaying local deformations and local fluid flows are derived. The equation for deformation tracers coincides with the earlier phenomenological model and thus co...
Recent experiments reveal both passive subdiffusion of various nanoparticles and anomalous active tr...
Organization of intracellular content is affected by multiple simultaneous processes, including diff...
Mechanical properties of cells are important to cellular functions. To gain a better understanding o...
Optical tracking in vivo experiments reveal that diffusion of particles in biological cells is stron...
Most of the proteins in the cell, including not only molecular motors and machines, but also enzymes...
The diffusion phenomena of myosin (myosin A, H-meromyosin or subfragment-1) in\F-actin plus ATP solu...
The nature of the mechanism limiting the velocity of ATP-induced unidirectional movements of actin-m...
The displacement of particles or probes in the cell cytoplasm as a function of time is characterized...
Inspired by recent experiments in cell biology, we elucidate the visco-elastic properties of an acti...
The interaction between cytoskeletal filaments (e.g., actin filaments) and molecular motors (e.g., m...
Einstein's original description of Brownian motion established a direct relationship between thermal...
Diffusion is a common phenomenon in nature and generally is associated with a system trying to reach...
The mechanical properties of soft biological materials are essential to their physiological function...
We observed the motion of an organelle transported by motor proteins in cells using fluorescence mic...
All substances exhibit constant random motion at the microscopic scale. This is a direct consequence...
Recent experiments reveal both passive subdiffusion of various nanoparticles and anomalous active tr...
Organization of intracellular content is affected by multiple simultaneous processes, including diff...
Mechanical properties of cells are important to cellular functions. To gain a better understanding o...
Optical tracking in vivo experiments reveal that diffusion of particles in biological cells is stron...
Most of the proteins in the cell, including not only molecular motors and machines, but also enzymes...
The diffusion phenomena of myosin (myosin A, H-meromyosin or subfragment-1) in\F-actin plus ATP solu...
The nature of the mechanism limiting the velocity of ATP-induced unidirectional movements of actin-m...
The displacement of particles or probes in the cell cytoplasm as a function of time is characterized...
Inspired by recent experiments in cell biology, we elucidate the visco-elastic properties of an acti...
The interaction between cytoskeletal filaments (e.g., actin filaments) and molecular motors (e.g., m...
Einstein's original description of Brownian motion established a direct relationship between thermal...
Diffusion is a common phenomenon in nature and generally is associated with a system trying to reach...
The mechanical properties of soft biological materials are essential to their physiological function...
We observed the motion of an organelle transported by motor proteins in cells using fluorescence mic...
All substances exhibit constant random motion at the microscopic scale. This is a direct consequence...
Recent experiments reveal both passive subdiffusion of various nanoparticles and anomalous active tr...
Organization of intracellular content is affected by multiple simultaneous processes, including diff...
Mechanical properties of cells are important to cellular functions. To gain a better understanding o...