E Esther Potier
Eindhoven University of Technology
23 Papers
138 Citations
E Esther Potier is an academic researcher from Eindhoven University of Technology. The author has contributed to research in topics: Stromal cell & Explant culture. The author has an hindex of 11, co-authored 23 publications. Previous affiliations of E Esther Potier include Paris Diderot University & Centre national de la recherche scientifique.
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Papers
Directing bone marrow-derived stromal cell function with mechanics
TL;DR: Recent experimental data are reviewed and discussed showing that despite some knowledge limitation, mechanical stimulation already constitutes an additional and efficient tool to drive BMSC differentiation.
103
Accuracy of Three Techniques to Determine Cell Viability in 3D Tissues or Scaffolds
Benjamin Gantenbein-Ritter,E Esther Potier,Stephan Zeiter,Marije van der Werf,Christoph M. Sprecher,Keita Ito +5 more
TL;DR: Although TB was the most accurate, LDH and CaAM/EthH provide valuable information on cell shape and spatial distribution of cells in tissue or a scaffold.
57
Effect of coculturing canine notochordal, nucleus pulposus and mesenchymal stromal cells for intervertebral disc regeneration
Irene T. M. Arkesteijn,Lucas A. Smolders,Lucas A. Smolders,Sandra Spillekom,Frank M. Riemers,E Esther Potier,E Esther Potier,Björn P. Meij,Keita Ito,Keita Ito,Marianna A. Tryfonidou +10 more
TL;DR: No regenerative potential of canine NCs on canine NPCs or MSCs was observed in this study, however, significant changes in NC phenotype in long-term culture may have resulted in a suboptimal regenerative Potential of these NCs.
Reduced tonicity stimulates an inflammatory response in nucleus pulposus tissue that can be limited by a COX-2-specific inhibitor
Bgm Bart van Dijk,E Esther Potier,Maarten van Dijk,Marloes L. P. Langelaan,Nicole Ellen Papen-Botterhuis,Keita Ito +5 more
TL;DR: Swelling of NP tissue, without the inflammatory system response, can trigger cytokine production and Celecoxib, even in bolus form, may be useful for pain control in extruded disc herniation.
23
Influencing biophysical properties of fibrin with buffer solutions
TL;DR: It is demonstrated that calcium, chloride, and FXIII modulate the biophysical properties of fibrin, and can be used to adjust mechanical and biological properties for tissue engineering applications.