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Forschungsstelle
INNOSUISSE
Projektnummer
13605.1;9 PFFLR-LS
Projekttitel
Creation of a new bioactive hyaluronic acid-based viscosupplement for intra-articular injection for arthritis.
Projekttitel Englisch
Creation of a new bioactive hyaluronic acid-based viscosupplement for intra-articular injection for arthritis.

Texte zu diesem Projekt

 DeutschFranzösischItalienischEnglisch
Kurzbeschreibung
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Abstract
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Erfasste Texte


KategorieText
Kurzbeschreibung
(Englisch)
Creation of a new bioactive hyaluronic acid-based viscosupplement for intra-articular injection for arthritis.
Kurzbeschreibung
(Französisch)
Creation of a new bioactive hyaluronic acid-based viscosupplement for intra-articular injection for arthritis
Abstract
(Englisch)
The goal of this project is to create a biocompatible and bio-stimulatory acid-based viscosupplement for intra-articular injection indicated to treat arthritis. Different hydrogels will be synthesized in relation to biological and mechanical studies for selection of viscosupplementation action and other innovative bio-stimulatory properties. This Medical Device will be prositioned as the only one which provides a proved action of biostimulation. In mid-2019, it would be projected to sell approximately 160'000 syringes of this new product. A letter, written by two leading Physicians in Orthopedics and Plastic Surgery, is supplied in this CTI application to support this innovative project.
Abstract
(Französisch)
The goal of this project is to create a biocompatible and bio-stimulatory acid-based viscosupplement for intra-articular injection indicated to treat arthritis. Different hydrogels will be synthesized in relation to biological and mechanical studies for selection of viscosupplementation action and other innovative bio-stimulatory properties. This Medical Device will be prositioned as the only one which provides a proved action of biostimulation. In mid-2019, it would be projected to sell approximately 160'000 syringes of this new product. A letter, written by two leading Physicians in Orthopedics and Plastic Surgery, is supplied in this CTI application to support this innovative project.