
AbbVie Ireland NL B.V.
AbbVie Ireland NL B.V.
2 Projects, page 1 of 1
Open Access Mandate for Publications assignment_turned_in Project2020 - 2023Partners:UCC, MENARINI SILICON BIOSYSTEMS SPA, B. Braun (Germany), BSL, TUW +63 partnersUCC,MENARINI SILICON BIOSYSTEMS SPA,B. Braun (Germany),BSL,TUW,PHILIPS ELECTRONICS NEDERLAND B.V.,ANSEM,University of Turku,GAUDLITZ GMBH,INPHER SARL,MICRONIT BV,MicroLIQUID (Spain),HI Iberia (Spain),UNIPV,MCS,HUN-REN CENTRE FOR ENERGY RESEARCH,EMFIT,BESI,STMicroelectronics (Switzerland),Okmetic,IMEC-NL,PRECORDIOR OY,OSYPKA,CSEM,INSTITUTUL NATIONAL DE CERCETAREDEZVOLTARE PENTRU MICROTEHNOLOGIE,University of Florence,INESC ID,OY EVERON AB,PICOSUN OY,Salvia BioElectronics,TU Delft,INESC MICROSISTEMAS E NANOTECNOLGIAS-INSTITUTO DE,AbbVie Ireland NL B.V.,TU/e,REMOTEA OY,IRBLEIDA,EVG,THALES DIS FINLAND OY,SILICONGATE LDA,3db,www.gobiond.com,Microfluidic ChipShop (Germany),KIT,Micronit Microfluidics (Netherlands),University of Freiburg,UM,IHS WEIGLING SOCIEDAD LIMITADA,BEONCHIP SL,UPV/EHU,DYB DYCONEX SA DYCONEX LTD,Integer,TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,PDM&FC,University of Zaragoza,INL,AESCULAP AG,INSPHERO,FHG,ICSENSE,IMEC,CORTEC,AEDUS SPACE KORLATOLT FELELOSSEGU TARSASAG,Roma Tre University,Besi Netherlands BV,IT,FUNDACION INSTITUTO DE INVESTIGACION SANITARIA ARAGON,TNO,PHILIPS MEDICAL SYSTEMS NEDERLANDFunder: European Commission Project Code: 876190Overall Budget: 65,224,200 EURFunder Contribution: 16,869,800 EURCompared to the pace of innovation in electronic consumer products, the pace of innovation for medical devices is lagging behind. It is the overarching objective of Moore4Medical to accelerate innovation in electronic medical devices. Moore4Medical emerging medical applications that offer significant new opportunities for the ECS industry including: active implantable devices (bioelectronic medicines), organ-on-chip, drug adherence monitoring, smart ultrasound, radiation free interventions and continuous monitoring. The new technologies will help fighting the increasing cost of healthcare by: reducing the need for hospitalization, helping the development of personalized therapies, and realizing intelligent point-of-care diagnostic tools. Moore4Medical will bring together 68 specialists from 12 countries who will develop open technology platforms for these emerging fields to help them bridge “the Valley of Death” in shorter time and at lower cost. Open technology platforms used by multiple users for multiple applications with the prospect of medium to high volume markets are an attractive proposition for the European ECS industry. The combination of typical MedTech applications with an ECS style platform approach will enhance the competitiveness for the emerging medical domains addressed in Moore4Medical. With value and IP moving from the technology level towards applications and solutions, defragmentation and open technology platforms will be key in acquiring and maintaining a premier position for Europe in the forefront of affordable healthcare
more_vert Open Access Mandate for Publications and Research data assignment_turned_in Project2024 - 2027Partners:INSTITUTUL NATIONAL DE CERCETAREDEZVOLTARE PENTRU MICROTEHNOLOGIE, DEMCON SYNC BIOSYSTEMS BV, USC, mediri GmbH, University of Zaragoza +39 partnersINSTITUTUL NATIONAL DE CERCETAREDEZVOLTARE PENTRU MICROTEHNOLOGIE,DEMCON SYNC BIOSYSTEMS BV,USC,mediri GmbH,University of Zaragoza,I+MED S COOP,MICRONIT BV,PHILIPS ELECTRONICS NEDERLAND B.V.,UNIPV,MCS,HUN-REN CENTRE FOR ENERGY RESEARCH,INESC ID,CORE LIFE ANALYTICS BV,XIVER,STELAR,Microfluidic ChipShop (Germany),Jobst Technologies (Germany),SILICONGATE LDA,OKOLAB SRL,UM,LOCSENSE B.V.,IMEC,CYTES BIOTECHNOLOGIES SL,IHS WEIGLING SOCIEDAD LIMITADA,VISCOFAN ESPANA S.L.,UCC,BEONCHIP SL,UPV/EHU,LIONIX INTERNATIONAL BV,LIPOTYPE,IMEC-NL,AbbVie Ireland NL B.V.,EU-OPENSCREEN ERIC,TU Delft,INESC MICROSISTEMAS E NANOTECNOLGIAS-INSTITUTO DE,DDS DIAGNOSTIC SRL,Technische Universität Braunschweig,CARL ZEISS MICROSCOPY GMBH,FHG,FVIB,IBEC,EBERS,TNO,FUNDACION INSTITUTO DE INVESTIGACION SANITARIA ARAGONFunder: European Commission Project Code: 101140192Overall Budget: 49,313,100 EURFunder Contribution: 14,323,700 EURThe launch of a novel drug to the market is preceded by clinical testing and validation both on animal in vitro and in vivo models. Animal models used in drug development have known methodological drawbacks leading to the failure of drugs. Further, animal tests are associated with ethical issues. Moreover, a strong bias in in-human testing still overlooks major population groups e.g. children, women, different ethical groups. It is estimated that 197,000 deaths per year in the EU are caused by Adverse Drug Reactions (ADRs) and the total cost to society of ADRs is €79 billion. The emerging Organ-on-Chip (OOC) field, an alternative to animal test, brings great potential for safe testing and validation: An OOC-systems consists of a 3D-microstructured channel network embedded on a small plastic device that simulates the mechanics and physiological response of an entire organ or organs. Project UNLOOC will develop, optimize, and validate a multitude of ECS-based tools to build OOC-models to replace animal and in-human testing. UNLOOC aims to combine three important characteristics for routine use of OOC models, i.e platforms that combine ECS-based technologies with established biological material, capitalize on AI, parallelized test set-ups allowing efficient high-throughput demands, and standardized procedures enabling reliable results. UNLOOC will develop ECS-based hardware and software tools and validate them in five Use Cases (UCs) performed in 10 European countries. The applications developed and validated will be used by academia and pharma industry to drive drug development, create cosmetics without animal test, personalized medicine and gain new insights into disease. Given the large OOC market, these solutions have great economic value, on average it would result in cost reduction of up to $169M and $706M per new drug reaching the market and will put Europe at the forefront of this booming research field (see impact section for details).
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