BiMe

Human pluripotent stem cells: a new tool to understand and treat retinal diseases

Datum
09.04.2015
Zeit
16:00 - 17:00
Sprecher
Dr. Olivier Goureau, Research Director at INSERM Laboratory of Cellular and Molecular Pathophysiology of the Retina U592, "INSERM", Paris, France
Serie
CMCB Life Sciences Seminar
Sprache
en
Hauptthema
Biologie
Andere Themen
Biologie, Medizin
Host
Mike Karl
Beschreibung
Information about the research of Dr. Goureau: Our research group aims at understanding retinal differentiation mechanisms and at participating in cell therapy by developing new approaches based on retinal cell regeneration. Our main research fields include the use of human induced pluripotent stem (iPS) cells in cell-based rescue or replacement strategies and in human retinal disease modeling. Our objectives are: i) the development of innovative and robust protocols allowing the differentiation of human iPS cells into different retinal cell types (retinal ganglion cells, photoreceptors and RPE cells) and the ii) derivation of iPS cells from patients affected by specific inherited retinal dystrophies to understand retinal pathological mechanisms and to further develop large-scale drug screening. Selected publications: From confluent human iPS cells to self-forming neural retina and retinal pigmented epithelium. Reichman S, Terray A, Slembrouck A, Nanteau C, Orieux G, Habeler W, Nandrot EF, Sahel JA, Monville C, Goureau O. Proc Natl Acad Sci U S A. 2014 Involvement of Bcl-2-associated transcription factor 1 in the differentiation of early-born retinal cells. Orieux G, Picault L, Slembrouck A, Roger JE, Guillonneau X, Sahel JA, Saule S, McPherson JP, Goureau O. J Neurosci. 2014 Ciliary neurotrophic factor promotes muller glia differentiation from the postnatal retinal progenitor pool. Goureau O, Rhee KD, Yang XJ. Dev Neurosci. 2004 Inducible nitric oxide synthase mediates the change from retinal to vitreal neovascularization in ischemic retinopathy. Sennlaub F, Courtois Y, Goureau O. J Clin Invest. 2001 Mar;107(6):717-25. Differential regulation of inducible nitric oxide synthase by fibroblast growth factors and transforming growth factor beta in bovine retinal pigmented epithelial cells: inverse correlation with cellular proliferation. Goureau O, Lepoivre M, Becquet F, Courtois Y. Proc Natl Acad Sci U S A. 1993
Links

Letztmalig verändert: 09.04.2015, 09:39:57

Veranstaltungsort

Fraunhofer-Institut fuer Zuverlaessigkeit und Mikrointegration - All Silicon System Integration Dresden (CRTD, auditorium left)Ringstraße1201468Moritzburg
Telefon
+49 351 795572-12

Veranstalter

Center for Regenerative Therapies DresdenFetscherstraße 10501307Dresden
Telefon
+49 (0)351 458 82052
Fax
+49 (0)351 458 82059
E-Mail
TUD CRTD
Homepage
https://tu-dresden.de/cmcb/crtd
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