Soft Biocompatible Polymeric Nanostructures: A Toolbox for Novel Generation of Nano Pharmaceuticals in Ophthalmology

Akronym

NanoPol

Bidragets beskrivning

We propose a research and innovation project that aims to develop a rational, knowledge-based toolbox for the fabrication of (1) biodegradable and biocompatible associating (gel-forming) polymers, (2) nanogels and (3) nanoparticles tailored as multifunctional therapeutic agents in ophthalmological applications. We seek for novel methods to replace currently used approaches with biocompatible and biodegradable synthetic/natural polymers. Macromolecules of increasingly complex architectures including block, graft and star-like polymers will be explored with respect to their ability to build up transient networks or nanoparticles with well-controlled rheological and structural properties and targeted performance. Profound understanding of the relation between architectural complexity and properties of the macromolecules is crucial for the fabrication of functional polymer-based materials for biomedicine and will greatly enhance the competitiveness of Europe in the field. Such conceptual understanding can only be achieved based on a rational interdisciplinary approach, in which theory and simulations guide experiments. Our work plan includes the design, synthesis and characterization of novel macromolecular architectures dictated by theoretical and simulation outcomes on the properties of the materials, followed by toxicity and in vitro/in vivo testing of the materials/structures and industrial feasibility studies. The macromolecular assemblies will be investigated as complex carriers enabling (1) prolonged retention in the eye and (2) controlled ocular drug release under external stimuli (i.e. temperature, light, pH). The synergy resulting from the cooperation between world-leading in their respective fields academic groups and companies though the effective secondments plan will provide a unique interdisciplinary research and training environment that will allow to address unmet challenges in the area and will ensure European leadership in cutting-edge technologies.
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Startår

2019

Slutår

2024

Beviljade finansiering

188 600 €
Participant
BIONAVIS OY
9 200 €
Participant
FLUX POLYMERS GMBH (DE)
59 800 €
Participant
SULIS POLYMERS BV (NL)
50 600 €
Participant
INSTITUTE OF POLYMER MATERIALS ANDTECHNOLOGY (KZ)
Participant
PANEPISTIMIO KRITIS (EL)
55 200 €
Coordinator
FUNDACAO UNIVERSIDADE FEDERAL DO ABC (BR)
Participant
USTAV MAKROMOLEKULARNI CHEMIE AV CRVVI (CZ)
69 000 €
Participant
THE UNIVERSITY OF READING (UK)
110 400 €
Participant
CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS (FR)
142 600 €
Participant

Beviljat belopp

685 400 €

Finansiär

Europeiska unionen

Typ av finansiering

Marie Skłodowska-Curie Research and Innovation Staff Exchange (RISE)

Ramprogram

Horizon 2020 Framework Programme

Utlysning

Programdel
EXCELLENT SCIENCE - Marie Skłodowska-Curie Actions (5220)
Stimulating innovation by means of cross-fertilisation of knowledge (5223)
Tema
Research and Innovation Staff Exchange (MSCA-RISE-2018)
Utlysnings ID
H2020-MSCA-RISE-2018

Övriga uppgifter

Finansieringsbeslutets nummer

823883

Identifierade teman

materials, nanomaterials