The project “DeDNAed” intends to develop a novel, innovative biosensing platform whose advantages and benefits are in terms of sensitivity, versatility and being ultrafast by an optical approach. Our platform will be based on the assembly and integration of sensing elements (transducer and bioreceptor) by DNA origami. The DNA origami will serve as a “nano-breadboard” in order to precisely control the position of these elements and thus the sensor architecture at the nanometer scale. This poster, presented at the University of Potsdam Science Day 11 October 2022, presents the structure of the project and the innovative bioanalytical platform specifically
DNA origami are used nowadays for a variety of applications as nano plug-in boards for bottom-up tec...
We report that plasmonic nanoantennas made by DNA origami can be used as reliable and efficient prob...
Accurate and reliable biosensing is crucial for environmental monitoring, food safety, and diagnosti...
The project “DeDNAed” intends to develop a novel, innovative biosensing platform whose advantages an...
In the EU-funded project DeDNAed, DNA Origami is used as a nano-breadboard to integrate a biological...
The development of novel biosensors with increased performance strongly relies on the incorporation ...
DNA nanotechnology is a powerful and promising tool for the development of nanoscale devices for nu...
Structural DNA nanotechnology provides a viable route for building from the bottom-up using DNA as c...
DNA origami technology allows for the precise nanoscale assembly of chemical entities that give rise...
Optical biosensing with single-molecule sensitivity requires high performant fluorescent probes. Man...
DNA origami is a novel self-assembly technique allowing one to form various 2D shapes and position m...
<p>DNA origami is a novel self-assembly technique that can be used to form various </p><p>2D and 3D ...
The poster, presented at BMT2022 in Innsbruck, Austria, gives an overview of the Safe-by-Design and ...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
DNA origami is a novel self-assembly technique allowing one to form various two-dimensional shapes a...
DNA origami are used nowadays for a variety of applications as nano plug-in boards for bottom-up tec...
We report that plasmonic nanoantennas made by DNA origami can be used as reliable and efficient prob...
Accurate and reliable biosensing is crucial for environmental monitoring, food safety, and diagnosti...
The project “DeDNAed” intends to develop a novel, innovative biosensing platform whose advantages an...
In the EU-funded project DeDNAed, DNA Origami is used as a nano-breadboard to integrate a biological...
The development of novel biosensors with increased performance strongly relies on the incorporation ...
DNA nanotechnology is a powerful and promising tool for the development of nanoscale devices for nu...
Structural DNA nanotechnology provides a viable route for building from the bottom-up using DNA as c...
DNA origami technology allows for the precise nanoscale assembly of chemical entities that give rise...
Optical biosensing with single-molecule sensitivity requires high performant fluorescent probes. Man...
DNA origami is a novel self-assembly technique allowing one to form various 2D shapes and position m...
<p>DNA origami is a novel self-assembly technique that can be used to form various </p><p>2D and 3D ...
The poster, presented at BMT2022 in Innsbruck, Austria, gives an overview of the Safe-by-Design and ...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
DNA origami is a novel self-assembly technique allowing one to form various two-dimensional shapes a...
DNA origami are used nowadays for a variety of applications as nano plug-in boards for bottom-up tec...
We report that plasmonic nanoantennas made by DNA origami can be used as reliable and efficient prob...
Accurate and reliable biosensing is crucial for environmental monitoring, food safety, and diagnosti...