Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Pauline De Berdt"'
Publikováno v:
Cellular and Molecular Life Sciences. 73:1413-1437
Dental stem cells are an emerging star on a stage that is already quite populated. Recently, there has been a lot of hype concerning these cells in dental therapies, especially in regenerative endodontics. It is fitting that most research is concentr
Autor:
Pauline De Berdt, Claudia N. Montero-Menei, Kevin Vanvarenberg, Anne des Rieux, Caroline Bouzin, Anibal R. Diogenes, Bernard Ucakar, Viridiane Gratpain, Saikrishna Kandalam
Publikováno v:
International Journal of Pharmaceutics
International Journal of Pharmaceutics, Elsevier, 2020, 587, pp.119685-. ⟨10.1016/j.ijpharm.2020.119685⟩
International Journal of Pharmaceutics, Elsevier, 2020, 587, pp.119685-. ⟨10.1016/j.ijpharm.2020.119685⟩
There is no treatment for spinal cord injury (SCI) that fully repairs the damages. One strategy is to inject mesenchymal stem cells around the lesion to benefit from their immunomodulatory properties and neuroprotective effect. Our hypothesis was tha
Autor:
Pauline, De Berdt, Pauline, Bottemanne, John, Bianco, Mireille, Alhouayek, Anibal, Diogenes, Amy, Lloyd, Amy, Llyod, Jose, Gerardo-Nava, Gary A, Brook, Véronique, Miron, Giulio G, Muccioli, Anne des, Rieux
Publikováno v:
De Berdt, P, Bottemanne, P, Bianco, J, Alhouayek, M, Diogenes, A, Llyod, A, Gerardo-Nava, J, Brook, G A, Miron, V, Muccioli, G G & Des Rieux, A 2018, ' Stem cells from human apical papilla decrease neuro-inflammation and stimulate oligodendrocyte progenitor differentiation via activin-A secretion ', Cellular and Molecular Life Sciences, vol. 75, no. 15, pp. 2843–2856 . https://doi.org/10.1007/s00018-018-2764-5
Cellular and Molecular Life Sciences, Vol. 75, p. 2843-2856 (2018)
Cellular and Molecular Life Sciences, Vol. 75, p. 2843-2856 (2018)
Secondary damage following spinal cord injury leads to non-reversible lesions and hampering of the reparative process. The local production of pro-inflammatory cytokines such as TNF-α can exacerbate these events. Oligodendrocyte death also occurs, f
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::b5fd04ba3d9209e350f5ea660ebd7c0f
https://www.pure.ed.ac.uk/ws/files/53877541/CMLS_D_17_01172_R1_3_002_.pdf
https://www.pure.ed.ac.uk/ws/files/53877541/CMLS_D_17_01172_R1_3_002_.pdf
Autor:
Julie Vanacker, Christine C. Dupont-Gillain, Laure Lambricht, Julian Leprince, Caroline Bouzin, Pauline De Berdt, Anne des Rieux, Hadi Goldansaz, Véronique Préat, Anibal R. Diogenes
Publikováno v:
Dental Materials. 30:e349-e361
The goal of the present work was to evaluate in vitro and in vivo the influence of various types and compositions of natural hydrogels on the viability and metabolic activity of SCAPs.Two alginate, three hyaluronic-based (Corgel™) hydrogel formulat
Autor:
Olivier Feron, Patrice D. Cani, Pauline De Berdt, Amandine Everard, Anne des Rieux, Caroline Bouzin, Julian Leprince, Anibal R. Diogenes, Julie Vanacker, Aiswarya Viswanath
Publikováno v:
Journal of Endodontics. 40:1410-1418
Stem cells from the apical papilla (SCAP) are a population of mesenchymal stem cells likely involved in regenerative endodontic procedures and have potential use as therapeutic agents in other tissues. In these situations, SCAP are exposed to hypoxic
Autor:
Anne des Rieux, Pauline De Berdt, Emilie Audouard, Frédéric Clotman, Olivier Feron, Véronique Préat, Peter Carmeliet, Caroline Bouzin, Eduardo Ansorena, Jacobs Damien, Christian Bailly, Olivier Schakman, María J. Blanco-Prieto, Teresa Simón-Yarza, Dietmar Auhl, Bernard Ucakar
Publikováno v:
Journal of Biomedical Materials Research Part A. 102:2345-2355
We hypothesized that vascular endothelial growth factor (VEGF)-containing hydrogels that gelify in situ after injection into a traumatized spinal cord, could stimulate spinal cord regeneration. Injectable hydrogels composed of 0.5% Pronova UPMVG MVG
Autor:
Jose Gerardo-Nava, Gary A. Brook, Mireille Alhouayek, Pauline Bottemanne, Amy F. Lloyd, Anne des Rieux, Veronique E. Miron, John Bianco, Pauline De Berdt, Giulio G. Muccioli, Anibal R. Diogenes
Publikováno v:
Cellular and Molecular Life Sciences. 75:2857-2857
In the original publication, sixth author's surname was incorrectly published as "Llyod" instead of "Lloyd". The correct name should read as "Amy Lloyd".
Autor:
Caroline Bouzin, Véronique Préat, Anne des Rieux, Loïc Germain, Julie Vanacker, Gaëlle Vandermeulen, Christine C. Dupont-Gillain, Damien Jacobs, Pauline De Berdt, Anibal R. Diogenes, Julian Leprince
Publikováno v:
Regenerative medicine. 10(2)
Aim: Evaluation of survival, proliferation and neurodifferentiation of dental stem cells from the apical papilla (SCAP) in fibrin hydrogels. We hypothesized that fibrin composition will influence cell behavior. Methods: Modulus, pore and fiber size w
Autor:
Anne, des Rieux, Pauline, De Berdt, Eduardo, Ansorena, Bernard, Ucakar, Jacobs, Damien, Olivier, Schakman, Emilie, Audouard, Caroline, Bouzin, Dietmar, Auhl, Teresa, Simón-Yarza, Olivier, Feron, Maria J, Blanco-Prieto, Peter, Carmeliet, Christian, Bailly, Fréderic, Clotman, Véronique, Préat
Publikováno v:
Journal of Biomedical Materials Research. Part A, Vol. 102, no. 7, p. 2345–2355 (2014)
We hypothesized that vascular endothelial growth factor (VEGF)-containing hydrogels that gelify in situ after injection into a traumatized spinal cord, could stimulate spinal cord regeneration. Injectable hydrogels composed of 0.5% Pronova UPMVG MVG
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=pmid_dedup__::984ce30f476978af287b49d175c9a2f5
https://hdl.handle.net/2078.1/133319
https://hdl.handle.net/2078.1/133319
Autor:
Olivier Schakman, Eduardo Ansorena, Aleksandar Jankovski, Véronique Préat, Teresa Simón-Yarza, Anne des Rieux, Ronald Deumens, Bernard Ucakar, Damien Jacobs, María J. Blanco-Prieto, Pauline De Berdt
Publikováno v:
Dadun. Depósito Académico Digital de la Universidad de Navarra
instname
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We hypothesized that local delivery of GDNF in spinal cord lesion via an injectable alginate hydrogel gelifying in situ would support spinal cord plasticity and functional recovery. The GDNF release from the hydrogel was slowed by GDNF encapsulation
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::0d50b16c2a8e00a0fcb3f3270aff6cfd
https://hdl.handle.net/10171/34791
https://hdl.handle.net/10171/34791