Peripheral Nervous System Progenitors Can Be Reprogrammed to Produce Myelinating Oligodendrocytes and Repair Brain Lesions

被引:19
作者
Binder, Ellen [1 ]
Rukavina, Marion [2 ]
Hassani, Hessameh [3 ]
Weber, Marlen [1 ]
Nakatani, Hiroko [3 ]
Reiff, Tobias [1 ]
Parras, Carlos [3 ]
Taylor, Verdon [2 ,4 ]
Rohrer, Hermann [1 ]
机构
[1] Max Planck Inst Brain Res, Dept Neurochem, D-60528 Frankfurt, Germany
[2] Max Planck Inst Immunobiol, Dept Mol Embryol, D-79108 Freiburg, Germany
[3] Univ Paris 06, Inst Cerveau & Moelle Epiniere, Hop La Pitie Salpetriere,Ctr Rech, INSERM,Unite Mixte Rech Sante 975,CNRS,UMR 7225, F-75013 Paris, France
[4] Univ Sheffield, Dept Biomed Sci, Ctr Stem Cell Biol, Sheffield S10 2TN, S Yorkshire, England
关键词
CREST STEM-CELLS; NEURAL PRECURSOR CELLS; BOUNDARY CAP CELLS; MAJOR DENSE LINE; SELF-RENEWAL; SCHWANN-CELLS; SUBVENTRICULAR ZONE; IN-VIVO; INTRINSIC DIFFERENCES; SHIVERER MOUSE;
D O I
10.1523/JNEUROSCI.0129-11.2011
中图分类号
Q189 [神经科学];
学科分类号
071006 [神经生物学];
摘要
Neural crest stem cells (NCSCs) give rise to the neurons and glia of the peripheral nervous system (PNS). NCSC-like cells can be isolated from multiple peripheral organs and maintained in neurosphere culture. Combining in vitro culture and transplantation, we show that expanded embryonic NCSC-like cells lose PNS traits and are reprogrammed to generate CNS cell types. When transplanted into the embryonic or adult mouse CNS, they differentiate predominantly into cells of the oligodendrocyte lineage without any signs of tumor formation. NCSC-derived oligodendrocytes generate CNS myelin and contribute to the repair of the myelin deficiency in shiverer mice. These results demonstrate a reprogramming of PNS progenitors to CNS fates without genetic modification and imply that PNS cells could be a potential source for cell-based CNS therapy.
引用
收藏
页码:6379 / 6391
页数:13
相关论文
共 61 条
[1]
In vitro and in vivo differentiation of boundary cap neural crest stem cells into mature Schwann cells [J].
Aquino, JB ;
Hjerling-Leffler, J ;
Koltzenburg, M ;
Edlund, T ;
Villar, MJ ;
Ernfors, P .
EXPERIMENTAL NEUROLOGY, 2006, 198 (02) :438-449
[2]
Myelination of the canine central nervous system by glial cell transplantation: A model for repair of human myelin disease [J].
Archer, DR ;
Cuddon, PA ;
Lipsitz, D ;
Duncan, ID .
NATURE MEDICINE, 1997, 3 (01) :54-59
[3]
Identification of self-replicating multipotent progenitors in the embryonic nervous system by high Notch activity and Hes5 expression [J].
Basak, Onur ;
Taylor, Verdon .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2007, 25 (04) :1006-1022
[4]
A Self-Regulatory System of Interlinked Signaling Feedback Loops Controls Mouse Limb Patterning [J].
Benazet, Jean-Denis ;
Bischofberger, Mirko ;
Tiecke, Eva ;
Goncalves, Alexandre ;
Martin, James F. ;
Zuniga, Aimee ;
Naef, Felix ;
Zeller, Rolf .
SCIENCE, 2009, 323 (5917) :1050-1053
[5]
Cell-intrinsic differences between stem cells from different regions of the peripheral nervous system regulate the generation of neural diversity [J].
Bixby, S ;
Kruger, GM ;
Mosher, JT ;
Joseph, NM ;
Morrison, SJ .
NEURON, 2002, 35 (04) :643-656
[7]
Compact myelin dictates the differential targeting of two sodium channel isoforms in the same axon [J].
Boiko, T ;
Rasband, MN ;
Levinson, SR ;
Caldwell, JH ;
Mandel, G ;
Trimmer, JS ;
Matthews, G .
NEURON, 2001, 30 (01) :91-104
[8]
BMP-2-dependent integration of adult mouse subventricular stem cells into the neural crest of chick and quail embryos [J].
Busch, Christian ;
Oppitz, Matthias ;
Sailer, Martin H. ;
Just, Lothar ;
Metzger, Marco ;
Drews, Ulrich .
JOURNAL OF CELL SCIENCE, 2006, 119 (21) :4467-4474
[9]
Novel Features of Boundary Cap Cells Revealed by the Analysis of Newly Identified Molecular Markers [J].
Coulpier, Fanny ;
Le Crom, Stephane ;
Maro, Geraldine S. ;
Manent, Jan ;
Giovannini, Marco ;
Maciorowski, Zofia ;
Fischer, Andreas ;
Gessler, Manfred ;
Charnay, Patrick ;
Topilko, Piotr .
GLIA, 2009, 57 (13) :1450-1457
[10]
Dorsal-ventral patterning and neural induction in Xenopus embryos [J].
De Robertis, EM ;
Kuroda, H .
ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 2004, 20 :285-308