DelNAM | Strengthening the Research Area of Delivery of Nucleic acid mimics (NAMS) into bacteria to fight the antibiotic crisis

Summary
DelNAM aims at Strengthening the Research Area of Delivery of Nucleic Acid Mimics (NAMS) into bacteria to fight the antibiotic crisis. This will be achieved by twinning the Faculty of Engineering of the University of Porto (FEUP) with outstanding EU institutions with high expertise in the areas of NAMs development and nanodelivery strategies. DelNAM will allow the development of a consolidated strategic research approach and a set of guidelines for exploitation and commercialization of the results that will have a strong regional, national and European impact. The proposal integrates synergies in complementary fields of research that include nanotechnology, synthetic chemistry, microbiology and bioprocess modelling, aiming to obtain scientific breakthroughs that can improve the global health and economy.

The objectives of this proposal are in line with the specific challenge and scope of the topic H2020-WIDESPREAD-2016-2017 of the Twinning call, addressing networking gaps and deficiencies between the research institutions of the Widening countries and internationally-leading counterparts at EU level. This challenge is addressed by twinning FEUP with 2 leading EU research institutions: University of Southern Denmark (SDU), in Odense, Denmark, a global leader in the development and invention of novel NAMs for gene therapy. They contribute with their extensive experience on the synthesis, structural studies and molecular modelling of NAMs; Ghent University (UGhent), in Belgium, an internationally-recognized laboratory for its excellence in the field of nanomedicines for the delivery of drugs and, in particular, nucleic acids. They provide decisive expertise on the design of delivery systems for nucleic acids and their behavior in native biological fluids.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/810685
Start date: 01-08-2018
End date: 31-01-2022
Total budget - Public funding: 960 853,75 Euro - 960 853,00 Euro
Cordis data

Original description

DelNAM aims at Strengthening the Research Area of Delivery of Nucleic Acid Mimics (NAMS) into bacteria to fight the antibiotic crisis. This will be achieved by twinning the Faculty of Engineering of the University of Porto (FEUP) with outstanding EU institutions with high expertise in the areas of NAMs development and nanodelivery strategies. DelNAM will allow the development of a consolidated strategic research approach and a set of guidelines for exploitation and commercialization of the results that will have a strong regional, national and European impact. The proposal integrates synergies in complementary fields of research that include nanotechnology, synthetic chemistry, microbiology and bioprocess modelling, aiming to obtain scientific breakthroughs that can improve the global health and economy.

The objectives of this proposal are in line with the specific challenge and scope of the topic H2020-WIDESPREAD-2016-2017 of the Twinning call, addressing networking gaps and deficiencies between the research institutions of the Widening countries and internationally-leading counterparts at EU level. This challenge is addressed by twinning FEUP with 2 leading EU research institutions: University of Southern Denmark (SDU), in Odense, Denmark, a global leader in the development and invention of novel NAMs for gene therapy. They contribute with their extensive experience on the synthesis, structural studies and molecular modelling of NAMs; Ghent University (UGhent), in Belgium, an internationally-recognized laboratory for its excellence in the field of nanomedicines for the delivery of drugs and, in particular, nucleic acids. They provide decisive expertise on the design of delivery systems for nucleic acids and their behavior in native biological fluids.

Status

CLOSED

Call topic

WIDESPREAD-05-2017

Update Date

17-05-2024
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Horizon 2020
H2020-EU.4. SPREADING EXCELLENCE AND WIDENING PARTICIPATION
H2020-EU.4.b. Twinning of research institutions
H2020-WIDESPREAD-05-2017-Twinning
WIDESPREAD-05-2017 Twinning