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Decoding and designing biomolecular systems with hybrid DNA:RNA: protein nanotechnology

CORDIS · observation · Publication date unknown

rgest and most complex functional molecular systems to date. Simultaneously, RNA plays a pivotal role in nanomedical advancements, notably in the development of Covid-19 vaccines. Moreover, utilising deep learning to address the protein prediction challenge paves the way for de novo protein design in the realm of protein nanotechnology. BioHYBRITE is designed as an innovative and pioneering training network, with the unique vision of developing the next-generation of biomolecular systems based on integrated hybrid DNA:RNA:Protein nanotechnology. BioHYBRITE brings together leading European research groups for combining all sequence-based biomolecules into a unified bottom-up nanobiotechnology. The consortium will collectively build modular platforms with a range of novel functions for molecular sensing, information processing and actuation. Thereby the collaboration synergizes a unique toolset of theoretical and experimental methods for designing and understanding the hybrid systems including state-of-the-art single-molecule and superresolution technology. The outcome will be a new ge

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recordType
award
status
SIGNED
region
EU
value
4507972.56
unit
EUR

Evidence & attribution

European Commission, CORDIS Horizon Europe project dataset. Metadata adapted.

License: CORDIS reuse policy

First collected: 2026-09-20T04:21:15.460Z. This is not the publication date.