The formation and functions of living materials and organisms are fundamentally different from those of synthetic materials and devices. Synthetic materials tend to have static structures, and are not capable of adapting to the functional needs of changing environments. In contrast, living systems utilize energy to create, heal, reconfigure, and dismantle materials in a dynamic, non-equilibrium fashion. The overall goal of the project was to organize and reconfigure functional assemblies of nanoparticles using strategies that mimic those found in living systems. Active assembly of nanostructures was studied using active biomolecules to drive the organization and assembly of nanocomposite materials. In this system, kinesin motor proteins and...
Kinesins are biological motors that transport cargo unidirectionally along microtubule tracks. These...
Precise control over the assembly of biocompatible three-dimensional (3D) nanostructures would allow...
The cytoplasm is a highly complex and heterogeneous medium that is structured by the cytoskeleton. H...
We assembled semiconductor nanocrystal quantum dots (NQDs) using microtubule (MT) fibers as nanoscal...
This thesis describes experimental work at the interface of nanotechnology and biology. We combine f...
ABSTRACT Microtubules and motor proteins are protein-based biological agents that work cooperatively...
The field of microfluidics has drastically contributed to downscale the size of benchtop experiments...
International audienceThe drastic downscaling of devices in the semiconductor industry is currently ...
A number of organisms and organelles are capable of self-propulsion at the micro- and nanoscales. Pr...
A number of organisms and organelles are capable of self-propulsion at the micro- and nanoscales. Pr...
Biological systems are intricate self-assembled systems built from dynamic nanoscale components. The...
Biomolecular motor based transport reconstituted in synthetic environment has been recently establis...
Biological materials and systems often dynamically self-assemble and disassemble, forming temporary ...
Molecular shuttles have been built from motor proteins capable of moving cargo along engineered path...
During the six months of funding we have focused first on the completion of the research begun at th...
Kinesins are biological motors that transport cargo unidirectionally along microtubule tracks. These...
Precise control over the assembly of biocompatible three-dimensional (3D) nanostructures would allow...
The cytoplasm is a highly complex and heterogeneous medium that is structured by the cytoskeleton. H...
We assembled semiconductor nanocrystal quantum dots (NQDs) using microtubule (MT) fibers as nanoscal...
This thesis describes experimental work at the interface of nanotechnology and biology. We combine f...
ABSTRACT Microtubules and motor proteins are protein-based biological agents that work cooperatively...
The field of microfluidics has drastically contributed to downscale the size of benchtop experiments...
International audienceThe drastic downscaling of devices in the semiconductor industry is currently ...
A number of organisms and organelles are capable of self-propulsion at the micro- and nanoscales. Pr...
A number of organisms and organelles are capable of self-propulsion at the micro- and nanoscales. Pr...
Biological systems are intricate self-assembled systems built from dynamic nanoscale components. The...
Biomolecular motor based transport reconstituted in synthetic environment has been recently establis...
Biological materials and systems often dynamically self-assemble and disassemble, forming temporary ...
Molecular shuttles have been built from motor proteins capable of moving cargo along engineered path...
During the six months of funding we have focused first on the completion of the research begun at th...
Kinesins are biological motors that transport cargo unidirectionally along microtubule tracks. These...
Precise control over the assembly of biocompatible three-dimensional (3D) nanostructures would allow...
The cytoplasm is a highly complex and heterogeneous medium that is structured by the cytoskeleton. H...