The authors describe the deposition of single biomolecules on substrates at defined spacing by pure self-assembly. The substrate is equipped with an array of 8 nm large gold particles which form the template for biomolecule binding. The authors verified the successful binding of single biomolecules via specific antibody labeling and imaging by fluorescence microscopy. Scanning force microscopy provided evidence that every gold nanoparticle of the pattern is occupied by at least one biomolecule. Furthermore, gold conjugated secondary antibodies in combination with scanning electron microscopy proved that at least 75% of the nanoparticles carried only one active biomolecule. The precision given by such surface densities is molecularly defined...
Camelid single-domain antibody fragments, also called nanobodies, constitute a class of binders that...
With the spread of deadly diseases worldwide, the design of rapid tests to identify causative microo...
There is considerable interest in developing functional protein arrays on the nanoscale for high-thr...
The authors describe the deposition of single biomolecules on substrates at defined spacing by pure ...
This dissertation describes the development of a new method for increasing the resolution of the cur...
A novel approach for the rapid fabrication of extended areas of micrometer-scaled patches of quasi-h...
Self-assembly of regular protein surfaces around nanoparticle templates provides a new class of hybr...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
International audienceProteins are the most specific yet versatile biological self-assembling agents...
Single-molecule nanodot arrays, in which a biomolecule of choice (protein, nucleic acid, etc.) is bo...
Single-molecule nanodot arrays, in which a biomolecule of choice (protein, nucleic acid, etc.) is bo...
Single-molecule nanodot arrays, in which a biomolecule of choice (protein, nucleic acid, etc.) is bo...
Bioinspired and bioinorganic materials sciences offer unique opportunities to produce and manipulate...
The nanoscale organization of acetylcholinesterase (AChE) and of its polyclonal antibody immobilized...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
Camelid single-domain antibody fragments, also called nanobodies, constitute a class of binders that...
With the spread of deadly diseases worldwide, the design of rapid tests to identify causative microo...
There is considerable interest in developing functional protein arrays on the nanoscale for high-thr...
The authors describe the deposition of single biomolecules on substrates at defined spacing by pure ...
This dissertation describes the development of a new method for increasing the resolution of the cur...
A novel approach for the rapid fabrication of extended areas of micrometer-scaled patches of quasi-h...
Self-assembly of regular protein surfaces around nanoparticle templates provides a new class of hybr...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
International audienceProteins are the most specific yet versatile biological self-assembling agents...
Single-molecule nanodot arrays, in which a biomolecule of choice (protein, nucleic acid, etc.) is bo...
Single-molecule nanodot arrays, in which a biomolecule of choice (protein, nucleic acid, etc.) is bo...
Single-molecule nanodot arrays, in which a biomolecule of choice (protein, nucleic acid, etc.) is bo...
Bioinspired and bioinorganic materials sciences offer unique opportunities to produce and manipulate...
The nanoscale organization of acetylcholinesterase (AChE) and of its polyclonal antibody immobilized...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
Camelid single-domain antibody fragments, also called nanobodies, constitute a class of binders that...
With the spread of deadly diseases worldwide, the design of rapid tests to identify causative microo...
There is considerable interest in developing functional protein arrays on the nanoscale for high-thr...