DNA biochip assays often require immobilization of bioactive molecules on solid surfaces. A simple biofunctionalization protocol and precise spatial binding represent the two major challenges in order to obtain localized region specific biopatterns into lab-on-a-chip (LOC) systems. In this work, a simple strategy to anchor oligonucleotides on microstructured areas and integrate the biomolecules patterns within microfluidic channels is reported. A photosensitive ZrO<sub>2</sub> system is proposed as an advanced platform and versatile interface for specific positioning and oriented immobilization of phosphorylated DNA. ZrO<sub>2</sub> sol–gel structures were easily produced on fused silica by direct UV lithography, allowing a simple and fast ...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2001.Includes...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
DNA biochip assays often require immobilization of bioactive molecules on solid surfaces. A simple b...
\u3cp\u3eFor the first time, a microchannel was photochemically patterned with a functional linker. ...
A novel approach to pattern silanized-biomolecules directly onto glass (SiOx) substrates via Dip-Pen...
For the first time, it microchannel was photochemically patterned with it functional linker. This si...
Two photolithographic methods are described for the formation of patterned single or multiple DNA sp...
There is a large interest in the use of the self-assembling properties of biomolecules in nanotechno...
We have developed a simple ultraviolet (UV)-photomodification protocol using poly(methyl methacrylat...
We have developed a biochip platform technology suitable for controlled cell-free gene expression at...
Three-dimensional (3D) microscaffolds for cell biology have shown their potential in mimicking physi...
In this work, the surface properties of a DNA microarray formed on silicon based solid support are s...
Diagnostics point to a future based on molecular signatures rather than on the detection of single ...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2001.Includes...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
DNA biochip assays often require immobilization of bioactive molecules on solid surfaces. A simple b...
\u3cp\u3eFor the first time, a microchannel was photochemically patterned with a functional linker. ...
A novel approach to pattern silanized-biomolecules directly onto glass (SiOx) substrates via Dip-Pen...
For the first time, it microchannel was photochemically patterned with it functional linker. This si...
Two photolithographic methods are described for the formation of patterned single or multiple DNA sp...
There is a large interest in the use of the self-assembling properties of biomolecules in nanotechno...
We have developed a simple ultraviolet (UV)-photomodification protocol using poly(methyl methacrylat...
We have developed a biochip platform technology suitable for controlled cell-free gene expression at...
Three-dimensional (3D) microscaffolds for cell biology have shown their potential in mimicking physi...
In this work, the surface properties of a DNA microarray formed on silicon based solid support are s...
Diagnostics point to a future based on molecular signatures rather than on the detection of single ...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2001.Includes...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...