Here, we report the application of a label-free electrochemical aptasensor based on a graphite-epoxy composite electrode for the detection of thrombin; in this work, aptamers were immobilized onto the electrodes surface using wet physical adsorption. The detection principle is based on the changes of the interfacial properties of the electrode; these were probed in the presence of the reversible redox couple [Fe(CN)6]3−/[Fe(CN)6]4− using impedance measurements. The electrode surface was partially blocked due to formation of aptamer-thrombin complex, resulting in an increase of the interfacial electron-transfer resistance detected by Electrochemical Impedance Spectroscopy (EIS). The aptasensor showed a linear response for thrombin in the ran...
In this work, we report a comparative study on three highly specific amplification strategies for th...
Highly sensitive biosensors are of high importance to the biomedical field. Graphene represents a pr...
An amperometric aptasensor has been developed by immobilization of DNA aptamer with Neutral Red (NR)...
Here, we report the application of a label-free electrochemical aptasensor based on a graphite-epoxy...
WOS: 000368340300022The impedimetric aptasensor for Thrombin (THR) was developed for the first time ...
WOS: 000367278400003Herein, impedimetric detection of THR could be achieved using an aptasensing pla...
AbstractThe goal of this work is to develop an impedimetric aptasensor sensitive, selective and stab...
An amperometric aptasensor has been developed by immobilization of DNA aptamer with Neutral Red (NR)...
The effect of aptamer structure and immobilization platform on the efficiency of thrombin binding an...
The effect of aptamer structure and immobilization platform on the efficiency of thrombin binding an...
The effect of aptamer structure and immobilization platform on the efficiency of thrombin binding an...
The effect of aptamer structure and immobilization platform on the efficiency of thrombin binding an...
We developed an electrochemical thrombin aptasensor based on ZnO nanorods functionalized by electros...
We developed an electrochemical thrombin aptasensor based on ZnO nanorods functionalized by electros...
A label-free and amplified electrochemical impedimetric aptasensor based on functionalized graphene ...
In this work, we report a comparative study on three highly specific amplification strategies for th...
Highly sensitive biosensors are of high importance to the biomedical field. Graphene represents a pr...
An amperometric aptasensor has been developed by immobilization of DNA aptamer with Neutral Red (NR)...
Here, we report the application of a label-free electrochemical aptasensor based on a graphite-epoxy...
WOS: 000368340300022The impedimetric aptasensor for Thrombin (THR) was developed for the first time ...
WOS: 000367278400003Herein, impedimetric detection of THR could be achieved using an aptasensing pla...
AbstractThe goal of this work is to develop an impedimetric aptasensor sensitive, selective and stab...
An amperometric aptasensor has been developed by immobilization of DNA aptamer with Neutral Red (NR)...
The effect of aptamer structure and immobilization platform on the efficiency of thrombin binding an...
The effect of aptamer structure and immobilization platform on the efficiency of thrombin binding an...
The effect of aptamer structure and immobilization platform on the efficiency of thrombin binding an...
The effect of aptamer structure and immobilization platform on the efficiency of thrombin binding an...
We developed an electrochemical thrombin aptasensor based on ZnO nanorods functionalized by electros...
We developed an electrochemical thrombin aptasensor based on ZnO nanorods functionalized by electros...
A label-free and amplified electrochemical impedimetric aptasensor based on functionalized graphene ...
In this work, we report a comparative study on three highly specific amplification strategies for th...
Highly sensitive biosensors are of high importance to the biomedical field. Graphene represents a pr...
An amperometric aptasensor has been developed by immobilization of DNA aptamer with Neutral Red (NR)...