DNA nanotechnology offers new biosensing approaches by templating different sensor and transducer components. Here, we combine DNA origami nanoantennas with label-free antibody detection by incorporating a nanoswitch in the plasmonic hotspot of the nanoantenna. The nanoswitch contains two antigens that are displaced by antibody binding, thereby eliciting a fluorescent signal. Single-antibody detection is demonstrated with a DNA origami integrated anti-digoxigenin antibody nanoswitch. In combination with the nanoantenna, the signal generated by the antibody is additionally amplified. This allows the detection of single antibodies on a portable smartphone microscope. Overall, fluorescence-enhanced antibody detection in DNA origami nanoantenna...
Developments in medical diagnostics, environmental monitoring, food safety and therapeutics require ...
The biofunctionalization of nanopatterned surfaces with DNA origami nanostructures is an important t...
Nucleic acids, DNA and RNA, are naturally occurring biopolymers synthetized by cells to store and pr...
DNA nanotechnology offers new biosensing approaches by templating different sensor and transducer co...
DNA nanotechnology is a powerful and promising tool for the development of nanoscale devices for nu...
Optical biosensing with single-molecule sensitivity requires high performant fluorescent probes. Man...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
The ability to detect low concentrations of protein biomarkers is crucial for the early-stage detect...
The ability to detect low concentrations of protein biomarkers is crucial for the early-stage detect...
The DNA origami technique has great potential for the development of brighter and more sensitive rep...
The ability to detect low concentrations of biomarkers in patient samples is one of the cornerstones...
Optical nanoantennas are known to focus freely propagating light and reversely to mediate the emissi...
The development of novel biosensors with increased performance strongly relies on the incorporation ...
Biosensors play increasingly important roles in many fields, from clinical diagnosis to environmenta...
The advent of highly sensitive photodetectors1,2 and the development of photostabilization strategie...
Developments in medical diagnostics, environmental monitoring, food safety and therapeutics require ...
The biofunctionalization of nanopatterned surfaces with DNA origami nanostructures is an important t...
Nucleic acids, DNA and RNA, are naturally occurring biopolymers synthetized by cells to store and pr...
DNA nanotechnology offers new biosensing approaches by templating different sensor and transducer co...
DNA nanotechnology is a powerful and promising tool for the development of nanoscale devices for nu...
Optical biosensing with single-molecule sensitivity requires high performant fluorescent probes. Man...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
The ability to detect low concentrations of protein biomarkers is crucial for the early-stage detect...
The ability to detect low concentrations of protein biomarkers is crucial for the early-stage detect...
The DNA origami technique has great potential for the development of brighter and more sensitive rep...
The ability to detect low concentrations of biomarkers in patient samples is one of the cornerstones...
Optical nanoantennas are known to focus freely propagating light and reversely to mediate the emissi...
The development of novel biosensors with increased performance strongly relies on the incorporation ...
Biosensors play increasingly important roles in many fields, from clinical diagnosis to environmenta...
The advent of highly sensitive photodetectors1,2 and the development of photostabilization strategie...
Developments in medical diagnostics, environmental monitoring, food safety and therapeutics require ...
The biofunctionalization of nanopatterned surfaces with DNA origami nanostructures is an important t...
Nucleic acids, DNA and RNA, are naturally occurring biopolymers synthetized by cells to store and pr...