Objectif
Antibiotics are essential therapeutics in the treatment of bacterial infections. However, the indiscriminate use of antibiotics has led to the emergence of antibiotic resistant bacteria that pose a major threat to human health as options for treating infections by these bacteria have become limited. The evolution, emergence and spread of
antibiotic resistance genes are still only poorly understood and expanding our knowledge on these aspects will provide novel leads to combat the emergence of antibiotic resistance.
The EvoTAR consortium gathers a multi-disciplinary group of leading European researchers in the fields of antibiotic resistance, microbial genomics and mathematical modelling. In addition, three research-intensive SMEs participate in EvoTAR, two of which are involved in the development of novel approaches to minimize the emergence and spread of antibiotic resistance.
The purpose of EvoTAR is to increase the understanding of the evolution and spread of antibiotic resistance in human pathogens. EvoTAR will characterise the human reservoir of antibiotic resistance genes (“the resistome”) by investigating the dynamics and evolution of the interaction between resistant and non-resistant bacteria from
the human microbiome and the interrelations of the human resistome with non-human reservoirs of resistance genes. Novel methods will be used to quantify resistance transfer under controlled conditions in gene exchange communities. Mathematical modelling will be applied to predict gene flow between different reservoirs and to
predict future resistance trends. Novel in vitro and in vivo models will allow the study of the efficacy of novel therapeutics aimed at reducing selection and spread of antibiotic resistance.
The EvoTAR project will generate novel insights into the evolution and spread of antibiotic resistance genes and thereby create opportunities for the development of novel interventions to curb the rising tide of antibiotic resistance in human pathogens.
Champ scientifique
Not validated
Not validated
- natural sciencesbiological sciencesgenetics
- natural sciencesbiological sciencesmicrobiologybacteriology
- medical and health sciencesbasic medicinepharmacology and pharmacypharmaceutical drugsantibiotics
- medical and health sciencesbasic medicinepharmacology and pharmacydrug resistanceantibiotic resistance
- natural sciencesmathematicsapplied mathematicsmathematical model
Appel à propositions
FP7-HEALTH-2011-single-stage
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Régime de financement
CP-IP - Large-scale integrating projectCoordinateur
3584 CX Utrecht
Pays-Bas
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Participants (17)
28046 MADRID
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28006 Madrid
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751 05 Uppsala
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2800 Kongens Lyngby
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6708 PB Wageningen
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1165 Kobenhavn
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Participation terminée
F-75205 / 13 Paris
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75011 PARIS
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39005 Santander
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75724 Paris
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24009 LEON
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28040 Madrid
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75007 Paris
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EH8 9YL Edinburgh
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53100 Siena
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1171 PK BADHOEVEDORP
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75012 Paris
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