Organic electronic transistors are rapidly emerging as ultrahigh sensitive label-free biosensors suited for point-of-care or in-field deployed applications. Most organic biosensors reported to date are based on immunorecognition between the relevant biomarkers and the immobilized antibodies, whose use is hindered by large dimensions, poor control of sequence, and relative instability. Here, an electrolyte-gated organic field effect transistor (EGOFET) biosensor where the recognition units are surface immobilized peptide aptamers (Affimer proteins) instead of antibodies is reported. Peptide aptasensor for the detection of the pro-inflammatory cytokine tumor necrosis factor alpha (TNFα) with a 1 × 10−12 m limit of detection is demonstrated. U...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
In this work we implemented low cost, organic transistors for biosensory application. The sensor is ...
Anchored, biotinylated phospholipids forming the capturing layers in an electrolyte‐gated organic fi...
Organic electronic transistors are rapidly emerging as ultrahigh sensitive label-free biosensors sui...
Biorecognition is a central event in biological processes in the living systems that is also widely ...
Biorecognition is a central event in biological processes in the living systems that is also widely ...
Cytokines are small proteins that play fundamental roles in inflammatory processes in the human body...
Electrolyte gated organic transistors can operate as powerful ultrasensitive biosensors, and efforts...
Electrolyte Gated Organic Field Effect Transistors (EGOFETs) are rapidly emerging as novel players i...
An overview of cytokine biosensing is provided, with a focus on the opportunities provided by organi...
Herein a label-free immunosensor based on electrolyte-gated organic field-effect transistor (EGOFET)...
Organic bioelectronic sensors are gaining momentum as they can combine high-performance sensing leve...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
In this work we implemented low cost, organic transistors for biosensory application. The sensor is ...
Anchored, biotinylated phospholipids forming the capturing layers in an electrolyte‐gated organic fi...
Organic electronic transistors are rapidly emerging as ultrahigh sensitive label-free biosensors sui...
Biorecognition is a central event in biological processes in the living systems that is also widely ...
Biorecognition is a central event in biological processes in the living systems that is also widely ...
Cytokines are small proteins that play fundamental roles in inflammatory processes in the human body...
Electrolyte gated organic transistors can operate as powerful ultrasensitive biosensors, and efforts...
Electrolyte Gated Organic Field Effect Transistors (EGOFETs) are rapidly emerging as novel players i...
An overview of cytokine biosensing is provided, with a focus on the opportunities provided by organi...
Herein a label-free immunosensor based on electrolyte-gated organic field-effect transistor (EGOFET)...
Organic bioelectronic sensors are gaining momentum as they can combine high-performance sensing leve...
In this contribution, we propose a label-free immunosensor, based on a novel type of electrolyte-gat...
In this work we implemented low cost, organic transistors for biosensory application. The sensor is ...
Anchored, biotinylated phospholipids forming the capturing layers in an electrolyte‐gated organic fi...