Sensitive and specific DNA biomarker detection is critical for accurately diagnosing a broad range of clinical conditions. However, the incorporation of such biosensing structures in integrated microfluidic devices is often complicated by the need for an additional labelling step to be implemented on the device. In this review we focused on presenting recent advances in label-free DNA biosensor technology, with a particular focus on microfluidic integrated devices. The key biosensing approaches miniaturized in flow-cell structures were presented, followed by more sophisticated microfluidic devices and higher integration examples in the literature. The option of full DNA sequencing on microfluidic chips via nanopore technology was highlighte...
A biosensor can be defined as a compact analytical device or unit incorporating a biological or biol...
We investigate the analytical performance of an interdigitated electrode sensor for the label-free d...
Nanoporous microbead-based microfluidic systems for biosensing applications allow enhanced sensitivi...
Sensitive and specific DNA biomarker detection is critical for accurately diagnosing a broad range o...
Microfluidics-based lab-on-chip (LOC) systems are an active research area that is revolutionising hi...
Microfluidics-based lab-on-chip (LOC) systems are an active research area that is revolutionising hi...
Genetic testing based on the analysis of circulating cell-free DNA (cfDNA) in body fluids, especiall...
Abstract This review covers three aspects of PCR-based microfluidic chip assays: sample preparation,...
With the view of enhancing the functionality of label-free single molecule nanopore-based detection,...
Microfluidic devices may offer various advantages for forensic DNA analysis, such as reduced risk of...
Microfluidic devices may offer various advantages for forensic DNA analysis, such as reduced risk of...
Single molecule sensing using solid-state nanopores has sparked tremendous interest within the last ...
Miniaturization to the micrometer and nanometer scale opens up the possibility to probe biology on a...
We have developed the first fully integrated microfluidic system for DNA sequencing-by-synthesis. Us...
This thesis investigates the design, fabrication, and testing of an easy-to-use, disposable and port...
A biosensor can be defined as a compact analytical device or unit incorporating a biological or biol...
We investigate the analytical performance of an interdigitated electrode sensor for the label-free d...
Nanoporous microbead-based microfluidic systems for biosensing applications allow enhanced sensitivi...
Sensitive and specific DNA biomarker detection is critical for accurately diagnosing a broad range o...
Microfluidics-based lab-on-chip (LOC) systems are an active research area that is revolutionising hi...
Microfluidics-based lab-on-chip (LOC) systems are an active research area that is revolutionising hi...
Genetic testing based on the analysis of circulating cell-free DNA (cfDNA) in body fluids, especiall...
Abstract This review covers three aspects of PCR-based microfluidic chip assays: sample preparation,...
With the view of enhancing the functionality of label-free single molecule nanopore-based detection,...
Microfluidic devices may offer various advantages for forensic DNA analysis, such as reduced risk of...
Microfluidic devices may offer various advantages for forensic DNA analysis, such as reduced risk of...
Single molecule sensing using solid-state nanopores has sparked tremendous interest within the last ...
Miniaturization to the micrometer and nanometer scale opens up the possibility to probe biology on a...
We have developed the first fully integrated microfluidic system for DNA sequencing-by-synthesis. Us...
This thesis investigates the design, fabrication, and testing of an easy-to-use, disposable and port...
A biosensor can be defined as a compact analytical device or unit incorporating a biological or biol...
We investigate the analytical performance of an interdigitated electrode sensor for the label-free d...
Nanoporous microbead-based microfluidic systems for biosensing applications allow enhanced sensitivi...