This is a match-making section for JPIAMR 14th call - Disrupting drug Resistance Using Innovative Design (DRUID).
General Information
- Project title: Multilayered nanocoated systems to fight antimicrobial resistance
- Type: Project looking for partner
- Organisation: Newcastle University
- Country: United Kingdom (UK)
Research area
- Scientific area(s) of the call:
- Improvement of drug/plant protection agent efficacy and/or specificity through chemical modifications (including hit to lead optimisation)
- Optimisation of drug/plant protection agent combinations, alone or with adjunct therapies (including therapeutic vaccines)
- Design and implementation of new strategies (including optimisation of drug doses) for improved application, efficacy and delivery of single or combinations of antimicrobials
- Design and implementation of innovative tools, including novel chemistry and/or new materials for improved application, efficacy and delivery of antimicrobials
- One Health Setting:
Human Health Animal Health (including wild-life, livestock, fishes, and companion animals)
- Type of studies/experimental approaches:
in silico, in vitro, in vivo
- Keywords:
Delivery systems;micro-organisms;human;animal;drug combination
- Brief description of your expertise / expertise you are looking for:
Our consortium has expertise in the design and manufacturing of multilayered drug delivery systems for a controlled release of ant type of biomolecules. We have skills in physico-chemical and biological characterisation of these systems. For the biological evaluation in vitro cells and microorganisms test can be performed in our Institutions.
- Brief description of your project / the project you would like to join:
We are looking for partner(s) with expertise on the mathematical modelling for evaluating the release kinetics of the biomolecules from the delivery systems and/or preliminary animal models for in vivo activity and early stage PK/PD. Expertise in mechanism of AMR is also welcome.
Contact details
Submitted on 2022-02-21 08:48:08
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