textGenetically engineered M13 bacteriphage (viruses) were used to self-assemble various nanomaterials (ZnS, Au, fluorescein, and phycoerythrin) into films and fibers. The filamentous viruses, which were the basic building block of the self-ordering system, were selected through phage display for their specific recognition moieties for desired materials surfaces. The M13 viruses coupled with ZnS nanocrystals spontaneously evolved a self-supporting hybrid film material that was ordered at the nano-scale and micron-scales. Periodic domains were continuously propagated over a centimeter length scale, an observance that was verified using various optical and electron microscopy techniques. Anti-streptavidin viruses, which could specific...
Bacteriophages are useful templates for the fabrication of electronically useful nanostructures. The...
<p> In this thesis it is demonstrated that it is possible to use Protein-based Polymers (PbPs) as sy...
One of the major research directions of tissue engineering is to develop artificial scaffolds that c...
textGenetically engineered M13 bacteriphage (viruses) were used to self-assemble various nanomateri...
Biological systems inherently posses the ability to synthesize and assemble nanomaterials with remar...
The goal of this work is to use proteins, viruses, and whole organisms to direct the growth and ass...
Plant viruses and virus-like protein cages (VLPs) have shown significant promise for a wide ...
Experimental studies were performed to fabricate various material structures using genetically engin...
Viruses offer promising applications in virotronics (virus-based technology) and as soft scaffolds f...
From the viewpoint of a materials scientist, viruses can be regarded as organic nanoparticles. They ...
A virus is considered a nanoscale organic material that can infect and replicate only inside the liv...
Self-assembly of regular protein surfaces around nanoparticle templates provides a new class of hybr...
Controlling structural organization and signaling motif display of biomimetic matrices at the nanome...
The M13 bacteriophage is -1 μm long, with a capsid comprised of five coat proteins. Small peptides c...
Advances in nanotechnology offer significant improvements in a wide range of applications that inclu...
Bacteriophages are useful templates for the fabrication of electronically useful nanostructures. The...
<p> In this thesis it is demonstrated that it is possible to use Protein-based Polymers (PbPs) as sy...
One of the major research directions of tissue engineering is to develop artificial scaffolds that c...
textGenetically engineered M13 bacteriphage (viruses) were used to self-assemble various nanomateri...
Biological systems inherently posses the ability to synthesize and assemble nanomaterials with remar...
The goal of this work is to use proteins, viruses, and whole organisms to direct the growth and ass...
Plant viruses and virus-like protein cages (VLPs) have shown significant promise for a wide ...
Experimental studies were performed to fabricate various material structures using genetically engin...
Viruses offer promising applications in virotronics (virus-based technology) and as soft scaffolds f...
From the viewpoint of a materials scientist, viruses can be regarded as organic nanoparticles. They ...
A virus is considered a nanoscale organic material that can infect and replicate only inside the liv...
Self-assembly of regular protein surfaces around nanoparticle templates provides a new class of hybr...
Controlling structural organization and signaling motif display of biomimetic matrices at the nanome...
The M13 bacteriophage is -1 μm long, with a capsid comprised of five coat proteins. Small peptides c...
Advances in nanotechnology offer significant improvements in a wide range of applications that inclu...
Bacteriophages are useful templates for the fabrication of electronically useful nanostructures. The...
<p> In this thesis it is demonstrated that it is possible to use Protein-based Polymers (PbPs) as sy...
One of the major research directions of tissue engineering is to develop artificial scaffolds that c...