Arrays of protein nanostructures can be formed on surfaces such as mica(0001) and Au(111) using lithography with polystyrene latex particles. To create arrays of protein nanostructures, monodisperse latex spheres are mixed with the desired protein (e.g. BSA, protein A or IgG) and deposited onto substrates. Protein-coated nanospheres self-assemble into organized crystalline layers when dried on flat surfaces. After rinsing with water, dried latex spheres are displaced to expose periodic arrays of uncovered circular cavities. The immobilized proteins remain attached to the surface and form nanopatterns over broad areas (microns) corresponding to the thickness of a single layer of proteins. The nanostructures of immobilized proteins maintain t...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
Aims: The applicability of particle lithography with monodisperse mesospheres is tested with various...
The recent decade has seen a rapid expansion in the ability to create and study nanometer scale obje...
Nanostructured polydimethylsiloxane stamps have been used to pattern regular nano-arrays of proteins...
Nanostructured polydimethylsiloxane stamps have been used to pattern regular nano-arrays of proteins...
We introduce a new method of nanoparticle lithography to produce periodic arrays of protein nanostru...
A novel approach for the rapid fabrication of extended areas of micrometer-scaled patches of quasi-h...
A novel approach for the rapid fabrication of extended areas of micrometer-scaled patches of quasi-h...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
There is considerable interest in developing functional protein arrays on the nanoscale for high-thr...
In this paper, we describe a method for immobilizing proteins and synthesizing peptides in micromete...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
In this paper, we describe a method for immobilizing proteins and synthesizing peptides in micromete...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
Aims: The applicability of particle lithography with monodisperse mesospheres is tested with various...
The recent decade has seen a rapid expansion in the ability to create and study nanometer scale obje...
Nanostructured polydimethylsiloxane stamps have been used to pattern regular nano-arrays of proteins...
Nanostructured polydimethylsiloxane stamps have been used to pattern regular nano-arrays of proteins...
We introduce a new method of nanoparticle lithography to produce periodic arrays of protein nanostru...
A novel approach for the rapid fabrication of extended areas of micrometer-scaled patches of quasi-h...
A novel approach for the rapid fabrication of extended areas of micrometer-scaled patches of quasi-h...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
There is considerable interest in developing functional protein arrays on the nanoscale for high-thr...
In this paper, we describe a method for immobilizing proteins and synthesizing peptides in micromete...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
In this paper, we describe a method for immobilizing proteins and synthesizing peptides in micromete...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...