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Design and Synthesis of Novel Bilayered Scaffolds for Periodontal Tissue Regeneration

Cel

"Current data concerning the use of scaffolds in Periodontal Tissue Regeneration are far from sufficient for successful tissue-engineering therapeutics in the periodontology field. Consequently, we have identified the need for the development of advanced biomimetic scaffold materials, which are versatile enough to be targeted for tooth-specific applications and capable to drive the growth and functional differentiation of stem/progenitor dental cells into matured organized periodontal tissues in a controlled manner. The aim of this project is the design, synthesis and optimization of an advanced bilayered composite scaffold based on glass-ceramic foams combined with electrospun collagen-based meshes that mimics the complex structure of periodontium, i.e. the hierarchical structure of cementum and alveolar bone, the periodontal ligament and the continuous, fibrous interface between these tissues. The implementation of this project is designed through the integration of three objectives, which involve: i) the synthesis and optimization of glass-ceramic scaffolds for cementum/alveolar bone regeneration, ii) the development and characterization of tailored collagen-based fibrous scaffolds for periodontal ligament regeneration, and iii) their innovative combination for the construction of novel bilayered scaffolds to regenerate the complex tissue interface at the periodontium."

Zaproszenie do składania wniosków

FP7-PEOPLE-2011-IEF
Zobacz inne projekty w ramach tego zaproszenia

Koordynator

FRIEDRICH-ALEXANDER-UNIVERSITAET ERLANGEN-NUERNBERG
Wkład UE
€ 167 390,40
Adres
SCHLOSSPLATZ 4
91054 Erlangen
Niemcy

Zobacz na mapie

Region
Bayern Mittelfranken Erlangen, Kreisfreie Stadt
Rodzaj działalności
Higher or Secondary Education Establishments
Kontakt administracyjny
Ulrike Hoffmann (Ms.)
Linki
Koszt całkowity
Brak danych