By developing new computational models, we examine how enzymatic reactions on an underlying surface can be harnessed to direct the motion and organization of reagent-laden microcapsules in a fluid-filled microchannel. In the presence of appropriate reagents, surface-bound enzymes can act as pumps, which drive large-scale fluid flows. When the reagents diffuse through the capsules' porous shells, they can react with enzymatic sites on the bottom surface. The ensuing reaction generates fluid density variations, which result in fluid flows. These flows carry the suspended microcapsules and drive them to aggregate into "colonies" on and near the enzyme-covered sites. This aggregation continues until the reagent has been depleted and the convect...
The study of enzyme behavior in small nanocompartments is crucial for the understanding of biocataly...
In cellular systems, compartmentalization plays an important role in the protection and regulation o...
We introduce rapid replica molding of ordered, high-aspect-ratio, thiol-ene micropillar arrays for i...
Compartmentalisation and selective transport of molecular species are key aspects of chemical transf...
Surface-bound enzymes can act as pumps that drive large-scale fluid flows in the presence of their s...
The nascent field of microscale flow chemistry focuses on harnessing flowing fluids to optimize chem...
Reconstitution and simulation of cellular motility in microcompartmentalized colloidal objects have ...
In the cell, enzymes are almost always spatially confined in crowded and tightly controlled cellular...
In the cell, enzymes are almost always spatially confined in crowded and tightly controlled cellular...
The directed transport of microparticles in microfluidic devices is vital for efficient bioassays an...
Despite the vast array of enzymatic activities available to metabolic engineers, many biosyntheses a...
Living cells harvest energy from their environments to drive the chemical processes that enable life...
Enzymes are always considered as great gifts from nature since they are holding brilliant properties...
Compartmentalization represents a key step in the design and synthesis of artificial cell-like struc...
Catalytically active colloids are model systems for chemical motors and active matter. It is desirab...
The study of enzyme behavior in small nanocompartments is crucial for the understanding of biocataly...
In cellular systems, compartmentalization plays an important role in the protection and regulation o...
We introduce rapid replica molding of ordered, high-aspect-ratio, thiol-ene micropillar arrays for i...
Compartmentalisation and selective transport of molecular species are key aspects of chemical transf...
Surface-bound enzymes can act as pumps that drive large-scale fluid flows in the presence of their s...
The nascent field of microscale flow chemistry focuses on harnessing flowing fluids to optimize chem...
Reconstitution and simulation of cellular motility in microcompartmentalized colloidal objects have ...
In the cell, enzymes are almost always spatially confined in crowded and tightly controlled cellular...
In the cell, enzymes are almost always spatially confined in crowded and tightly controlled cellular...
The directed transport of microparticles in microfluidic devices is vital for efficient bioassays an...
Despite the vast array of enzymatic activities available to metabolic engineers, many biosyntheses a...
Living cells harvest energy from their environments to drive the chemical processes that enable life...
Enzymes are always considered as great gifts from nature since they are holding brilliant properties...
Compartmentalization represents a key step in the design and synthesis of artificial cell-like struc...
Catalytically active colloids are model systems for chemical motors and active matter. It is desirab...
The study of enzyme behavior in small nanocompartments is crucial for the understanding of biocataly...
In cellular systems, compartmentalization plays an important role in the protection and regulation o...
We introduce rapid replica molding of ordered, high-aspect-ratio, thiol-ene micropillar arrays for i...