Motivated by the observations of intracellular phase separations and the wetting of cell membranes by protein droplets, we study the nonequilibrium surface wetting by Monte Carlo simulations of a lattice gas model involving particle creation. We find that, even when complete wetting should occur in equilibrium, the fast creation of particles can hinder the surface wetting for a long time due to the bulk droplet formation. Performing molecular dynamics simulations, we show that this situation also holds in colloidal particle systems when the disorder density is sufficiently high. The results suggest an intracellular control mechanism of surface wetting by changing the speed of component synthesis.Comment: 6 pages, 4 figure
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
When binary mixtures are confined into nanoscopic slit pores, an intricate interplay between surface...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...
Phase separation under nonequilibrium conditions is exploited by biological cells to organize their ...
A lattice model is used to study repulsive active particles at a planar surface. A rejection-free K...
Funder: Junior Research Fellow at Kings CollegeFunder: Ernest Oppenheimer Memorial Trust; doi: http:...
The interplay between phase separation and wetting of multicomponent mixtures is ubiquitous in natur...
Protein-rich droplets, such as stress granules, P-bodies, and the nucleolus, perform diverse and spe...
Liquid-liquid phase separation has emerged as a fundamental mechanism underlying intracellular organ...
Biological cells need to structure their interior in space and time. One way this is done are conta...
All living things are driven by chemical reactions. Reactions provide energy and transform matter. T...
In living cells, protein-rich condensates can wet the cell membrane and surfaces of membrane-bound o...
Many recent studies of liquid-liquid phase separation in biology focus on phase separation as a dyna...
Disordered proteins and nucleic acids can condense into droplets that resemble the membraneless orga...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
When binary mixtures are confined into nanoscopic slit pores, an intricate interplay between surface...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...
Phase separation under nonequilibrium conditions is exploited by biological cells to organize their ...
A lattice model is used to study repulsive active particles at a planar surface. A rejection-free K...
Funder: Junior Research Fellow at Kings CollegeFunder: Ernest Oppenheimer Memorial Trust; doi: http:...
The interplay between phase separation and wetting of multicomponent mixtures is ubiquitous in natur...
Protein-rich droplets, such as stress granules, P-bodies, and the nucleolus, perform diverse and spe...
Liquid-liquid phase separation has emerged as a fundamental mechanism underlying intracellular organ...
Biological cells need to structure their interior in space and time. One way this is done are conta...
All living things are driven by chemical reactions. Reactions provide energy and transform matter. T...
In living cells, protein-rich condensates can wet the cell membrane and surfaces of membrane-bound o...
Many recent studies of liquid-liquid phase separation in biology focus on phase separation as a dyna...
Disordered proteins and nucleic acids can condense into droplets that resemble the membraneless orga...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
When binary mixtures are confined into nanoscopic slit pores, an intricate interplay between surface...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...