Chips containing polycrystalline silicon interdigitated electrodes are modified with the enzyme urease. The sensors are able to detect changes in the resitivity of the solution near their surface, where the enzymatic reaction generates charged species. The electrodes are also grafted with an antigen and queried with different amounts of urease labeled antibody. The response of the modified electrodes is proportional to the amount of enzyme attached to the surface by the biorecognition event, thus validating the assay for biosensing applications
A porous silicon biosensor based on P450 enzyme for arachidonic acid detection was developed. A new ...
A number of technologies have been proposed over the years to prepare nano and micro structures and ...
A new approach for the electrical readout of microarrays prepared on regular glass slides, using an ...
We report fabrication of potentiometric biosensors with silicon for the estimation of triglycerides ...
Detection of physical changes of cells is emerging as a new diagnostic approach to determine their p...
Based on electrical biochips made in Si-technology cost effective portable devices have been constru...
Field-effect capacitive enzyme biosensors for the detection of penicillin, organophosphorous pestici...
A new approach to the preparation of electrochemical biosensors, based on a mixed Sepharose-carbon p...
Nanoscaled interdigitated electrode arrays were made with deep UV lithography. Electrode widths and ...
Latex beads are adhered to the surface of a chip containing polycrystalline silicon interdigitated e...
AbstractField-effect capacitive EIS (electrolyte-insulator-semiconductor) sensors functionalised wit...
A potentiometric biosensor based on urease was developed for the quantitative determination of urea ...
A biosensor has been developed based on induced wavelength shifts in the Fabry-Perot fringes in the ...
As a working electrode (WE) comes in contact with an electrolyte, an electrical double layer (EDL) f...
Enzymatic substrate regeneration is a tool to enhance the sensitivity of enzyme electrodes both for ...
A porous silicon biosensor based on P450 enzyme for arachidonic acid detection was developed. A new ...
A number of technologies have been proposed over the years to prepare nano and micro structures and ...
A new approach for the electrical readout of microarrays prepared on regular glass slides, using an ...
We report fabrication of potentiometric biosensors with silicon for the estimation of triglycerides ...
Detection of physical changes of cells is emerging as a new diagnostic approach to determine their p...
Based on electrical biochips made in Si-technology cost effective portable devices have been constru...
Field-effect capacitive enzyme biosensors for the detection of penicillin, organophosphorous pestici...
A new approach to the preparation of electrochemical biosensors, based on a mixed Sepharose-carbon p...
Nanoscaled interdigitated electrode arrays were made with deep UV lithography. Electrode widths and ...
Latex beads are adhered to the surface of a chip containing polycrystalline silicon interdigitated e...
AbstractField-effect capacitive EIS (electrolyte-insulator-semiconductor) sensors functionalised wit...
A potentiometric biosensor based on urease was developed for the quantitative determination of urea ...
A biosensor has been developed based on induced wavelength shifts in the Fabry-Perot fringes in the ...
As a working electrode (WE) comes in contact with an electrolyte, an electrical double layer (EDL) f...
Enzymatic substrate regeneration is a tool to enhance the sensitivity of enzyme electrodes both for ...
A porous silicon biosensor based on P450 enzyme for arachidonic acid detection was developed. A new ...
A number of technologies have been proposed over the years to prepare nano and micro structures and ...
A new approach for the electrical readout of microarrays prepared on regular glass slides, using an ...