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Funded Projects › H2020

DeDNAed · Cluster decorated recognition elements on DNA origami for enhanced raman spectroscopic detection methods

H2020Status: CLOSED1 March 202131 August 2024EU funding €2,994,354Call H2020-FETOPEN-2018-2020

The project ""DeDNAed"" is intended 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 bread board” in order to precisely control the position of these elements and thus the sensor architecture at the nanometer scale. Metallic atomic clusters (ACs) are integrated into a biological marker molecule (DNA or antibody) and thus represent the biological sensor element. This is specifically integrated into a nanoarray made of additional metallic nanoparticles precisely controlled by a DNA origami template and will lead to a significant increase in signal. DNA origami serves as an individually inter- and intramolecularly programmable nano bread board. A DNA origami consists of a single strand of DNA, folded by a thermal treatment and certain staple strands into any shapes (2D as well as 3D, dimensions between 10 and several 100 nanometers). So-called ""sticky ends"" on the surface of the DNA origami offer the possibility of an individual implementation of the sensing elements and NPs, by means of correspondingly complementary oligonucleotides with a resolutions of 2 nm. When the analyte is connected to the sensor element, a change in the Raman signal can thus be detected without major delay using surface-enhanced Raman spectroscopy (SERS). This sensor method is not bound to a specific biomarker molecule for the sensor element, but can be transferred to different marker molecules. This means a high degree of flexibility in the area of application, from medical technology to food monitoring. In addition, a transfer of the DNA origami-based sensor platform to flexible, textile substrates is carried out using lipid bi layers and the Langmuir-Blodgett method for later use as a wipe test or medical wearable.""

Consortium · 7 organisations

coordinator

TECHNISCHE UNIVERSITAET CHEMNITZ

DE · €677,328

participant

ASOCIACION CENTRO DE INVESTIGACION COOPERATIVA EN BIOMATERIALES- CIC biomaGUNE

ES · €314,001

participant

FUNDACION TECNALIA RESEARCH & INNOVATION

ES · €309,375

participant

KURT-SCHWABE-INSTITUT FUR MESS- UND SENSORTECHNIK MEINSBERG EV

DE · €461,958

participant

BIONANONET FORSCHUNGSGESELLSCHAFT MBH

AT · €356,999

participant

UNIVERSITAET POTSDAM

DE · €448,194

participant

UNIVERSITE DU MANS

FR · €426,500

Research fields

View the official record on CORDIS →

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Source: CORDIS, Publications Office of the European Union. Global Research Partnerships surfaces open EU research data to help you find collaborators; we are not affiliated with the European Union.