We present an electrokinetic label-free biomolecular screening chip (Glass/PDMS) to screen up to 10 samples simultaneously using surface plasmon resonance imaging (iSPR). This approach reduces the duration of an experiment when compared to conventional experimental methods. This new device offers a high degree of parallelization not only for analyte samples, but also for multiplex analyte interactions where up to 90 ligands are immobilized on the sensing surface. The proof of concept has been demonstrated with well-known biomolecular interactant pairs. The new chip can be used for high throughput screening applications and kinetics parameter extraction, simultaneously, of interactant-protein complex formatio
In proteomics research still two-dimensional gel electrophoresis (2D-GE) is currently used for bioma...
International audienceMost of the recent developments aiming to the coupling between surface plasmon...
International audienceProtein microarray is a promising technology that should combine rapidity and ...
We report a new integrated Lab-on-a-Chip (LOC) and surface plasmon resonance imaging (iSPR) system t...
In this paper we show a high-throughput method to screen the kinetics and affinity constants of many...
We present a simple electrokinetic lab-on-a-biochip (EKLB) with four microchannels integrated with a...
Label-free measurement techniques, such as surface plasmon resonance (SPR) and surface plasmon reson...
We present a multiplex biosensing method to simultaneously screen targets of interest in a multiple ...
We present a multiplex biosensing method to simultaneously screen targets of interest in a multiple ...
<p>This work reports an integrated platform combining localized-surface plasmon resonance (LSPR) and...
abstract: Proteins play a central role to human body and biological activities. As powerful tools fo...
The advances in proteomics and genomics have led to discover a lot of biomarkers that can potentiall...
International audienceBACKGROUND: Developing rapid, high-throughput assays for detecting and charact...
PluridisciplinaritéMicroarrays are promising devices for high throughput analysis, especially, prote...
In proteomics research still two-dimensional gel electrophoresis (2D-GE) is currently used for bioma...
International audienceMost of the recent developments aiming to the coupling between surface plasmon...
International audienceProtein microarray is a promising technology that should combine rapidity and ...
We report a new integrated Lab-on-a-Chip (LOC) and surface plasmon resonance imaging (iSPR) system t...
In this paper we show a high-throughput method to screen the kinetics and affinity constants of many...
We present a simple electrokinetic lab-on-a-biochip (EKLB) with four microchannels integrated with a...
Label-free measurement techniques, such as surface plasmon resonance (SPR) and surface plasmon reson...
We present a multiplex biosensing method to simultaneously screen targets of interest in a multiple ...
We present a multiplex biosensing method to simultaneously screen targets of interest in a multiple ...
<p>This work reports an integrated platform combining localized-surface plasmon resonance (LSPR) and...
abstract: Proteins play a central role to human body and biological activities. As powerful tools fo...
The advances in proteomics and genomics have led to discover a lot of biomarkers that can potentiall...
International audienceBACKGROUND: Developing rapid, high-throughput assays for detecting and charact...
PluridisciplinaritéMicroarrays are promising devices for high throughput analysis, especially, prote...
In proteomics research still two-dimensional gel electrophoresis (2D-GE) is currently used for bioma...
International audienceMost of the recent developments aiming to the coupling between surface plasmon...
International audienceProtein microarray is a promising technology that should combine rapidity and ...