[EN] We design and characterize a nanofluidic device for the label-free specific detection of histamine neurotransmitter based on a metal ion displacement mechanism. The sensor consists of an asymmetric polymer nanopore fabricated via ion track-etching technique. The nanopore sensor surface having metal-nitrilotriacetic (NTA-Ni2+) chelates is obtained by covalent coupling of native carboxylic acid groups with N-alpha,N-alpha-bis(carboxymethyl)-L-lysine (BCML), followed by exposure to Ni2+ ion solution. The BCML immobilization and subsequent Ni2+ ion complexation with NTA moieties change the surface charge concentration, which has a significant impact on the current-voltage (I-V) curve after chemical modification of the nanopore. The sensing...
During the last few years, much scientific effort has been devoted to the control of ionic transport...
In order to ensure high food quality, one of the prime importance is the detection and quantificatio...
We describe the fabrication of a chemical-sensitive nanofluidic device based on asymmetric nanopores...
We design and characterize a nanofluidic device for the label-free specific detection of histamine n...
In the recent years, track-etched nanopores became the major impulse in the development of nanofluid...
Histamine is an indicator of food quality and indispensable in the efficient functioning of various ...
Histamine is an indicator of food quality and indispensable in the efficient functioning of various ...
Histamine is a biogenic amine that can be found at high concentrations in rotten food such as fish ...
The need for more advanced, accurate and lower cost sensor platforms is constantly growing. However,...
Rapid and cost-effective analysis of histamine, in food, environmental, and diagnostics research has...
In this communication we discuss the development of ionophore based nanosensors for the detection an...
Here we demonstrate a nanofluidic device for the label‐free detection of phosphoprotein (PPn) analyt...
Solid-contact ion-selective electrodes for histamine (HA) determination were fabricated and studied....
Analyzing biologically relevant molecules is an important aspect of medical diagnostics. T...
International audienceSolid-state nanopores provide a powerful tool to electrically analyze nanopart...
During the last few years, much scientific effort has been devoted to the control of ionic transport...
In order to ensure high food quality, one of the prime importance is the detection and quantificatio...
We describe the fabrication of a chemical-sensitive nanofluidic device based on asymmetric nanopores...
We design and characterize a nanofluidic device for the label-free specific detection of histamine n...
In the recent years, track-etched nanopores became the major impulse in the development of nanofluid...
Histamine is an indicator of food quality and indispensable in the efficient functioning of various ...
Histamine is an indicator of food quality and indispensable in the efficient functioning of various ...
Histamine is a biogenic amine that can be found at high concentrations in rotten food such as fish ...
The need for more advanced, accurate and lower cost sensor platforms is constantly growing. However,...
Rapid and cost-effective analysis of histamine, in food, environmental, and diagnostics research has...
In this communication we discuss the development of ionophore based nanosensors for the detection an...
Here we demonstrate a nanofluidic device for the label‐free detection of phosphoprotein (PPn) analyt...
Solid-contact ion-selective electrodes for histamine (HA) determination were fabricated and studied....
Analyzing biologically relevant molecules is an important aspect of medical diagnostics. T...
International audienceSolid-state nanopores provide a powerful tool to electrically analyze nanopart...
During the last few years, much scientific effort has been devoted to the control of ionic transport...
In order to ensure high food quality, one of the prime importance is the detection and quantificatio...
We describe the fabrication of a chemical-sensitive nanofluidic device based on asymmetric nanopores...