We describe a microfluidic concentration device to accelerate the surface hybridization reaction between DNA and morpholinos (MOs) for enhanced detection. The microfluidic concentrator comprises a single polydimethylsiloxane (PDMS) microchannel onto which an ion-selective layer of conductive polymer poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS) was directly printed and then reversibly surface bonded onto a morpholino microarray for hybridization. Using this electrokinetic trapping concentrator, we could achieve a maximum concentration factor of ∼800 for DNA and a limit of detection of 10 nM within 15 min. In terms of the detection speed, it enabled faster hybridization by around 10-fold when compared to conventional ...
ABSTRACT: We introduce an on-chip electrokinetic assay to perform high-sensitivity nucleic acid (NA)...
We report an integrated system for accelerating assays with concentrators in a standard 12-well plat...
To combine the advantages of high-throughput microarray and microfluidic chip technology, microarray...
Electrokinetic concentration based on ion concentration polarization (ICP) offers a unique possibili...
The use of microfluidic tools to develop two novel approaches to surface-based oligonucleotide hybri...
A microconcentration concept is proposed to enhance the sensitivity of deoxyribonucleic acid (DNA) h...
This work describes a novel and simple modification of the current microarray format. It reduces the...
Microfluidic DNA analysis systems fabricated on silicon, glass and polymer substrates offer multiple...
A new format for microfluidic based DNA biosensors is presented in which the biorecognition element ...
One of the most promising ways to improve clinical diagnostic tools is to use microfluidic Lab-on-a-...
Low-density arrays were assembled into microfluidic channels hot-embossed in poly(methyl methacrylat...
International audienceSpeeding up and enhancing the performances of nucleic acid biosensing technolo...
The overall objective of this thesis is to integrate a number of micro/nanotechnologies into integra...
This thesis deals with the design and the fabrication of microfluidic devices in PDMS (Polydimethyls...
Since the advent of genetic analysis, electrode materials have played an irreplaceable role due to t...
ABSTRACT: We introduce an on-chip electrokinetic assay to perform high-sensitivity nucleic acid (NA)...
We report an integrated system for accelerating assays with concentrators in a standard 12-well plat...
To combine the advantages of high-throughput microarray and microfluidic chip technology, microarray...
Electrokinetic concentration based on ion concentration polarization (ICP) offers a unique possibili...
The use of microfluidic tools to develop two novel approaches to surface-based oligonucleotide hybri...
A microconcentration concept is proposed to enhance the sensitivity of deoxyribonucleic acid (DNA) h...
This work describes a novel and simple modification of the current microarray format. It reduces the...
Microfluidic DNA analysis systems fabricated on silicon, glass and polymer substrates offer multiple...
A new format for microfluidic based DNA biosensors is presented in which the biorecognition element ...
One of the most promising ways to improve clinical diagnostic tools is to use microfluidic Lab-on-a-...
Low-density arrays were assembled into microfluidic channels hot-embossed in poly(methyl methacrylat...
International audienceSpeeding up and enhancing the performances of nucleic acid biosensing technolo...
The overall objective of this thesis is to integrate a number of micro/nanotechnologies into integra...
This thesis deals with the design and the fabrication of microfluidic devices in PDMS (Polydimethyls...
Since the advent of genetic analysis, electrode materials have played an irreplaceable role due to t...
ABSTRACT: We introduce an on-chip electrokinetic assay to perform high-sensitivity nucleic acid (NA)...
We report an integrated system for accelerating assays with concentrators in a standard 12-well plat...
To combine the advantages of high-throughput microarray and microfluidic chip technology, microarray...