The DNA origami technique has great potential for the development of brighter and more sensitive reporters for fluorescence based detection schemes such as a microbead-based assay in diagnostic applications. The nanostructures can be programmed to include multiple dye molecules to enhance the measured signal as well as multiple probe strands to increase the binding strength of the target oligonucleotide to these nanostructures. Here we present a proof-of-concept study to quantify short oligonucleotides by developing a novel DNA origami based reporter system, combined with planar microbead assays. Analysis of the assays using the VideoScan digital imaging platform showed DNA origami to be a more suitable reporter candidate for quantification...
We demonstrate the hybridization-induced fluorescence detection of DNA on an origami-based paper ana...
<div><p>DNA origami is an emerging technology that assembles hundreds of staple strands and one sing...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
The DNA origami technique has great potential for the development of brighter and more sensitive rep...
DNA nanotechnology offers new biosensing approaches by templating different sensor and transducer co...
Optical biosensing with single-molecule sensitivity requires high performant fluorescent probes. Man...
DNA nanotechnology is a powerful and promising tool for the development of nanoscale devices for nu...
The ability to detect low concentrations of biomarkers in patient samples is one of the cornerstones...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
Nucleic acids, DNA and RNA, are naturally occurring biopolymers synthetized by cells to store and pr...
The ability to detect low concentrations of protein biomarkers is crucial for the early-stage detect...
It was almost four decades ago when the recognition of DNA’s potential use as a programmable, self-a...
Nucleic acid nanotechnology exploits the programmable molecular recognition properties of natural an...
Large-scale nanoarrays of single biomolecules enable high-throughput assays while unmasking the unde...
The ability to detect low concentrations of protein biomarkers is crucial for the early-stage detect...
We demonstrate the hybridization-induced fluorescence detection of DNA on an origami-based paper ana...
<div><p>DNA origami is an emerging technology that assembles hundreds of staple strands and one sing...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
The DNA origami technique has great potential for the development of brighter and more sensitive rep...
DNA nanotechnology offers new biosensing approaches by templating different sensor and transducer co...
Optical biosensing with single-molecule sensitivity requires high performant fluorescent probes. Man...
DNA nanotechnology is a powerful and promising tool for the development of nanoscale devices for nu...
The ability to detect low concentrations of biomarkers in patient samples is one of the cornerstones...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
Nucleic acids, DNA and RNA, are naturally occurring biopolymers synthetized by cells to store and pr...
The ability to detect low concentrations of protein biomarkers is crucial for the early-stage detect...
It was almost four decades ago when the recognition of DNA’s potential use as a programmable, self-a...
Nucleic acid nanotechnology exploits the programmable molecular recognition properties of natural an...
Large-scale nanoarrays of single biomolecules enable high-throughput assays while unmasking the unde...
The ability to detect low concentrations of protein biomarkers is crucial for the early-stage detect...
We demonstrate the hybridization-induced fluorescence detection of DNA on an origami-based paper ana...
<div><p>DNA origami is an emerging technology that assembles hundreds of staple strands and one sing...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...