We present the very first worldwide ever-reported electrochemical biosensor based on a memristive effect and DNA aptamers. This novel device is developed to propose a completely new approach in cancer diagnostics. In this study, an affinity-based technique is presented for the detection of the prostate specific antigen (PSA) using DNA aptamers. The hysteretic properties of memristive silicon nanowires functionalized with these DNA aptamers provide a label-free and ultrasensitive biodetection technique. The ultrasensitive detection is hereby demonstrated for PSA with a limit of detection down to 23 aM, best ever published value for electrochemical biosensors in PSA detection. The effect of polyelectrolytes on our memristive devices is also r...
We report on a novel strategy for DNA aptamer immobilization to develop sensitive electrochemical de...
Memristive biosensors have been proved as excellent candidates for ultrasensitive biosensing. In thi...
The development of electrically addressable, label-free detectors for DNA and other biological macro...
We present the very first worldwide ever-reported electrochemical biosensor based on a memristive ef...
We present the very first worldwide ever-reported electrochemical biosensor based on a memristive ef...
Nanowire based platforms are widely reported for sensing applications and for their potential in the...
Nanoscale devices exhibiting memristive properties show great potential in a plethora of application...
peer reviewedFor the first time memristive biosensors developed by the incorporation of scAbs (singl...
For the first time memristive biosensors developed by the incorporation of scAbs (single-chain antib...
Silicon nanowires are reported for their application in bio sensing area and their potential in the ...
Highly sensitive electrical detection of biomarkers for the early stage screening of cancer is desir...
Silicon nanowires are reported for their application in bio sensing area and their potential in the ...
Prostate cancer is the most common cancer among men except for skin cancer, and the detection at ear...
Semiconductor nanowires are emerging as promising building blocks for biosensors enabling direct ele...
Prostate cancer is a life-threatening malignant disease, one the most common cancer types in men and...
We report on a novel strategy for DNA aptamer immobilization to develop sensitive electrochemical de...
Memristive biosensors have been proved as excellent candidates for ultrasensitive biosensing. In thi...
The development of electrically addressable, label-free detectors for DNA and other biological macro...
We present the very first worldwide ever-reported electrochemical biosensor based on a memristive ef...
We present the very first worldwide ever-reported electrochemical biosensor based on a memristive ef...
Nanowire based platforms are widely reported for sensing applications and for their potential in the...
Nanoscale devices exhibiting memristive properties show great potential in a plethora of application...
peer reviewedFor the first time memristive biosensors developed by the incorporation of scAbs (singl...
For the first time memristive biosensors developed by the incorporation of scAbs (single-chain antib...
Silicon nanowires are reported for their application in bio sensing area and their potential in the ...
Highly sensitive electrical detection of biomarkers for the early stage screening of cancer is desir...
Silicon nanowires are reported for their application in bio sensing area and their potential in the ...
Prostate cancer is the most common cancer among men except for skin cancer, and the detection at ear...
Semiconductor nanowires are emerging as promising building blocks for biosensors enabling direct ele...
Prostate cancer is a life-threatening malignant disease, one the most common cancer types in men and...
We report on a novel strategy for DNA aptamer immobilization to develop sensitive electrochemical de...
Memristive biosensors have been proved as excellent candidates for ultrasensitive biosensing. In thi...
The development of electrically addressable, label-free detectors for DNA and other biological macro...