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Funded Projects › HORIZON

STOP · Surface Transfer of Pathogens

HORIZONStatus: SIGNED1 September 202230 November 2026EU funding €4,264,953Call HORIZON-CL4-2021-RESILIENCE-01

The STOP project will develop antimicrobial and antiviral nanocoatings that can be flexibly or permanently applied to high-touch surfaces. These nanocoatings will be derived from a combination of inorganic nanoparticles, antimicrobial peptides and nanoscale laser surface patterning. The nanocoatings will be thoroughly characterised for their efficacy, using both existing international standards and improved testing methods developed within the project (the new testing methods will be proposed to standards agencies for adoption). Several different active substances will be explored (i) to allow formulation in highly flexible, sprayable, and long-lasting coatings, (ii) provide broad spectrum antimicrobial antiviral activity, and iii) reduce the chances of the development of resistance. To this end, the mode-of-action, and the risk of selection for antimicrobial resistance in bacteria and viruses will be assessed.The flexible nanocoatings will provide a long-lasting (30 days) reduction in bioburden that resembles standards set for microbial colonization of surfaces in hospitals, which can only be reached after intense surface disinfection or permanent introduction of known antimicrobial material such as copper. This effect will be studied in a real-life intervention trail and with epidemiological models. The developed nanocoatings are expected to lead to significant reductions in infectious diseases transmitted from high-touch surfaces, healthcare cost savings, reduction in environmental pollution by disinfectants, and increased preparedness of the EU public health system to future pandemics. The safety of the nanomaterials will be backed up by human and environmental toxicity studies and life cycle analyses. From the beginning, attention will be paid to end-user acceptance, manufacturing scalability, and short-term exploitation by SMEs

Consortium · 15 organisations

coordinator

BUNDESANSTALT FUER MATERIALFORSCHUNG UND -PRUEFUNG

DE · €1,062,384

participant

ASTIKI MI KERDOSKOPIKI ETAIREIA PROLIPTIKIS PERIVALLONTIKIS KAI ERGASIAKIS IATRIKIS

EL · €207,250

participant

INSTITUT PRO ELEKTRONIKA NA BAN - INSTITUTE OF ELECTRONICS BULGARIAN ACADEMY OF SCIENCES

BG · €285,000

participant

APEL LASER SRL

RO · €332,500

participant

TARTU ULIKOOL

EE · €399,950

participant

UNIVERSITA DEGLI STUDI DI TRIESTE

IT · €283,920

participant

FRAUNHOFER GESELLSCHAFT ZUR FORDERUNG DER ANGEWANDTEN FORSCHUNG EV

DE · €234,518

associatedPartner

THE UNIVERSITY OF BIRMINGHAM

UK

participant

IDRYMA TECHNOLOGIAS KAI EREVNAS

EL · €552,246

participant

SATAKUNNAN AMMATTIKORKEAKOULU OY

FI · €284,905

associatedPartner

AMANUENSIS GMBH

CH

participant

AFFIX LABS OY

FI · €337,250

associatedPartner

EIDGENOSSISCHE MATERIALPRUFUNGS- UND FORSCHUNGSANSTALT

CH

associatedPartner

KING'S COLLEGE LONDON

UK

participant

RUDER BOSKOVIC INSTITUTE

HR · €285,030

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.