Monolayer graphene field-effect sensors operating in liquid have been widely deployed for detecting a range of analyte species often under equilibrium conditions. Here we report on the real-time detection of the binding kinetics of the essential human enzyme, topoisomerase I interacting with substrate molecules (DNA probes) that are immobilized electrochemically on to monolayer graphene strips. By monitoring the field-effect characteristics of the graphene biosensor in real-time during the enzyme-substrate interactions, we are able to decipher the surface binding constant for the cleavage reaction step of topoisomerase I activity in a label-free manner. Moreover, an appropriate design of the capture probes allows us to distinctly follow the...
WOS: 000302308600025PubMed ID: 22439135We present a graphene oxide (GO) integrated disposable electr...
© 2018 Dr. Nikolai DontschukThe field of genetics has grown rapidly since the isolation of the doubl...
The need for scalable, rapid, sensitive, label-free detection of small biomolecules and chemicals su...
Monolayer graphene field-effect sensors operating in liquid have been widely deployed for detecting ...
Monolayer graphene field-effect sensors operating in liquid have been widely deployed for detecting ...
Sensors capable of quantitative real-time measurements may present the easiest and most accurate way...
Recent research trends now offer new opportunities for developing the next generations of label‐free...
We demonstrate a label-free biosensor concept based on specific receptor modules, which provide immo...
This paper presents an aptameric graphene nanosensor for detection of small-molecule biomarkers. To ...
Fast and reliable DNA sequencing is a long-standing target in biomedical research. Recent advances i...
Isothermal amplification is an efficient way to amplify DNA with high accuracy; however, the real-ti...
Here we have demonstrated that graphene serves as a remarkable platform for monitoring the multitask...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
Background: Eukaryotic topoisomerase 1 is a potential target of anti-parasitic and anti-cancer drugs...
A graphene-nanoparticle (NP) hybrid biosensor that utilizes an electrical hysteresis change to detec...
WOS: 000302308600025PubMed ID: 22439135We present a graphene oxide (GO) integrated disposable electr...
© 2018 Dr. Nikolai DontschukThe field of genetics has grown rapidly since the isolation of the doubl...
The need for scalable, rapid, sensitive, label-free detection of small biomolecules and chemicals su...
Monolayer graphene field-effect sensors operating in liquid have been widely deployed for detecting ...
Monolayer graphene field-effect sensors operating in liquid have been widely deployed for detecting ...
Sensors capable of quantitative real-time measurements may present the easiest and most accurate way...
Recent research trends now offer new opportunities for developing the next generations of label‐free...
We demonstrate a label-free biosensor concept based on specific receptor modules, which provide immo...
This paper presents an aptameric graphene nanosensor for detection of small-molecule biomarkers. To ...
Fast and reliable DNA sequencing is a long-standing target in biomedical research. Recent advances i...
Isothermal amplification is an efficient way to amplify DNA with high accuracy; however, the real-ti...
Here we have demonstrated that graphene serves as a remarkable platform for monitoring the multitask...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
Background: Eukaryotic topoisomerase 1 is a potential target of anti-parasitic and anti-cancer drugs...
A graphene-nanoparticle (NP) hybrid biosensor that utilizes an electrical hysteresis change to detec...
WOS: 000302308600025PubMed ID: 22439135We present a graphene oxide (GO) integrated disposable electr...
© 2018 Dr. Nikolai DontschukThe field of genetics has grown rapidly since the isolation of the doubl...
The need for scalable, rapid, sensitive, label-free detection of small biomolecules and chemicals su...