In search of human oligodendroglia for myelin repair

作者: Delphine Buchet , Anne Baron-Van Evercooren

DOI: 10.1016/J.NEULET.2008.09.086

关键词: NeuroscienceMyelinBiologyPrecursor cellMultiple sclerosisNeural stem cellCell therapyProgenitor cellNeurogliaOligodendrocyte

摘要: Cell therapy appears as an exciting strategy for myelin repair in pathologies where oligodendrocytes are deficient or impaired, such leucodystrophies and multiple sclerosis. Many studies indicate that several types of rodent cells, including neural stem progenitor play a beneficial role after grafting induce functional recovery animal models disorders. However, the difficulties to commit human cells towards oligodendroglial lineage have long hampered cell-based these diseases. In this review, we present recent advances field discuss various strategies helped overcome challenge differentiation.

参考文章(109)
Robert A Lazzarini, John W Griffin, Hans Lassman, Klaus-Armin Nave, Robert Miller, Bruce D Trapp, Myelin Biology and Disorders ,(2004)
A. Baron-Van Evercooren, W.F. Blakemore, Remyelination through Engraftment Myelin Biology and Disorders. pp. 143- 172 ,(2004) , 10.1016/B978-012439510-7/50059-0
Peter C. Mabie, Mark F. Mehler, John A. Kessler, Multiple roles of bone morphogenetic protein signaling in the regulation of cortical cell number and phenotype. The Journal of Neuroscience. ,vol. 19, pp. 7077- 7088 ,(1999) , 10.1523/JNEUROSCI.19-16-07077.1999
Oliver Brüstle, Khalid Choudhary, Khalad Karram, Anita Hüttner, Kerren Murray, Monique Dubois-Dalcq, Ronald D.G. McKay, Chimeric brains generated by intraventricular transplantation of fetal human brain cells into embryonic rats Nature Biotechnology. ,vol. 16, pp. 1040- 1044 ,(1998) , 10.1038/3481
Masanori Sasaki, Bingcang Li, Karen L. Lankford, Christine Radtke, Jeffery D. Kocsis, Remyelination of the injured spinal cord Progress in Brain Research. ,vol. 161, pp. 419- 433 ,(2007) , 10.1016/S0079-6123(06)61030-3
Rosemary A. Fricker, Melissa K. Carpenter, Christian Winkler, Corinne Greco, Monte A. Gates, Anders Björklund, Site-Specific Migration and Neuronal Differentiation of Human Neural Progenitor Cells after Transplantation in the Adult Rat Brain The Journal of Neuroscience. ,vol. 19, pp. 5990- 6005 ,(1999) , 10.1523/JNEUROSCI.19-14-05990.1999
Y. Kondo, D. A. Wenger, V. Gallo, I. D. Duncan, Galactocerebrosidase-deficient oligodendrocytes maintain stable central myelin by exogenous replacement of the missing enzyme in mice Proceedings of the National Academy of Sciences of the United States of America. ,vol. 102, pp. 18670- 18675 ,(2005) , 10.1073/PNAS.0506473102
Stephen A. Back, Ning Ling Luo, Natalya S. Borenstein, Joel M. Levine, Joseph J. Volpe, Hannah C. Kinney, Late Oligodendrocyte Progenitors Coincide with the Developmental Window of Vulnerability for Human Perinatal White Matter Injury The Journal of Neuroscience. ,vol. 21, pp. 1302- 1312 ,(2001) , 10.1523/JNEUROSCI.21-04-01302.2001
S Timsit, S Martinez, B Allinquant, F Peyron, L Puelles, B Zalc, Oligodendrocytes originate in a restricted zone of the embryonic ventral neural tube defined by DM-20 mRNA expression The Journal of Neuroscience. ,vol. 15, pp. 1012- 1024 ,(1995) , 10.1523/JNEUROSCI.15-02-01012.1995
Jonathan D. Flax, Sanjay Aurora, Chunhua Yang, Clemence Simonin, Ann Marie Wills, Lori L. Billinghurst, Moncef Jendoubi, Richard L. Sidman, John H. Wolfe, Seung U. Kim, Evan Y. Snyder, Engraftable human neural stem cells respond to development cues, replaceneurons, and express foreign genes Nature Biotechnology. ,vol. 16, pp. 1033- 1039 ,(1998) , 10.1038/3473