Novel nanometrically structured therapeutic hydrogel as injectable for fascial t...
Novel nanometrically structured therapeutic hydrogel as injectable for fascial tissues surrounding the nerves intended for preventive treatment of chronic pain
The key goals of the TherGeLFas project are: (a) the training of a talented experienced researcher in the fast growing field of innovative biomaterials for medical applications where the host and partner institutions have a critic...
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31/10/2020
I+MED S.COOP. PEQU...
170K€
Presupuesto del proyecto: 170K€
Líder del proyecto
I+MED S.COOP. PEQUEÑA
No se ha especificado una descripción o un objeto social para esta compañía.
TRL
4-5
| 50K€
Fecha límite participación
Sin fecha límite de participación.
Financiación
concedida
El organismo H2020 notifico la concesión del proyecto
el día 2020-10-31
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Información proyecto TherGelFas
Duración del proyecto: 27 meses
Fecha Inicio: 2018-07-11
Fecha Fin: 2020-10-31
Líder del proyecto
I+MED S.COOP. PEQUEÑA
No se ha especificado una descripción o un objeto social para esta compañía.
TRL
4-5
| 50K€
Presupuesto del proyecto
170K€
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
The key goals of the TherGeLFas project are: (a) the training of a talented experienced researcher in the fast growing field of innovative biomaterials for medical applications where the host and partner institutions have a critical knowledge and expertise; and, (b) the design and development of cost- efficient polymer materials in order to develop a new medicinal product for post-operative acute pain treatment and prevention of chronification.
The aim of the research project and the main scientific challenge is thereby to develop a ‘therapeutically effective’ hydrogel based injectable product to be applied during and post-surgery in the fascial tissue that protects the nerves where the pain originates and chronifies. TherGelFas expects to create the proof of concept of a new medicinal product by combining advanced materials (a biodegradable, antiseptic and biocompatible carrier, made of porous nanostructured hydrogel based on hyaluronic acid) with the ability to load and release non-steroidal antiinflamatory drugs in a controlled manner. It is aimed for the improvement of the current multimodal strategies of peripheral nerve blockade injections used during and post-surgery in acute pain treatment to prevent it from becoming chronic and that unfortunately are unsuccessful many times.
The first achievement will be that of the training of the experienced researcher in new areas of knowledge such as business development from original concept stages to production scale-up, manufacturing and marketing stages. The second achievement will be to scientifically assess whether these hydrogels can improve and replace currently used therapies, to develop a proof-of-concept scalable product. The third achievement will be to learn how to perform correctly the necessary steps needed to launch a product of this kind, such as record and prepare all the documentation needed to present the product to the corresponding regulatory agencies.