Thibaud Coradin
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Articles (11)
Role of Physico-Chemical and Cellular Conditions on the Bone Repair Potential of Plastically Compressed Collagen Hydrogels
Since their first description nearly 20 years ago, dense collagen hydrogels obtained by plastic compression have become popular scaffolds in tissue engineering. In particular, when seeded with dental pulp stem cells, they have demonstrated a great in vivo potential in cranial bone repair. Here, we investigated how physico-chemical and cell-seeding conditions could influence the formation and in vitro mineralization of these cellularized scaffolds. A qualitative assessment demonstrated that the gel stability before and after compression was highly sensitive to the conditions of fibrillogenesis, especially initial acid acetic and buffer concentrations. Gels with similar rheological properties but different fibrillar structures that exhibited different stabilities when used for the 3D culture of Stem cells from Human Exfoliated Deciduous teeth (SHEDs) could be prepared. Finally, in our optimal physico-chemical conditions, mineralization could be achieved only using human dental pulp stem cells (hDPSCs) at a high cell density. These results highlight the key role of fibrillogenic conditions and cell type/density on the bone repair potential of cell-laden plastically compressed collagen hydrogels.
Year:
2024
Collaborators (12)
Sophie Maillard
associate professor
Université de Reims
Christian Serre
-
M Christopher Dean
University College London
Clémence Sicard
Institut Lavoisier de Versailles
Ludovic SICARD
Université de Paris Faculté de Santé
Catherine Chaussain
Prof
Université Paris Cité
Francisco Fernandes
Associate professor
Sorbonne Université
Tilman Breiderhoff
Facility Head
Deutsches Zentrum für Neurodegenerative Erkrankungen
Verónica de Zea Bermudez
Full Professor
Universidade de Trás-os-Montes e Alto Douro
Sophia HOUARI
Associate Professor
Université de Paris Faculté de Santé
Caroline Andrique
Associate professor
Université Paris Descartes
Claire Bardet
Professor
Université Paris Cité

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