Stem cell repair of central nervous system injury
- 19 April 2002
- journal article
- review article
- Published by Wiley in Journal of Neuroscience Research
- Vol. 68 (5) , 501-510
- https://doi.org/10.1002/jnr.10240
Abstract
Neural stem cells (NSCs) have great potential as a therapeutic tool for the repair of a number of CNS disorders. NSCs can either be isolated from embryonic and adult brain tissue or be induced from both mouse and human ES cells. These cells proliferate in vitro through many passages without losing their multipotentiality. Following engraftment into the adult CNS, NSCs differentiate mainly into glia, except in neurogenic areas. After engraftment into the injured and diseased CNS, their differentiation is further retarded. In vitro manipulation of NSC fate prior to transplantation and/or modification of the host environment may be necessary to control the terminal lineage of the transplanted cells to obtain functionally significant numbers of neurons. NSCs and a few types of glial precursors have shown the capability to differentiate into oligodendrocytes and to remyeliate the demyelinated axons in the CNS, but the functional extent of remyelination achieved by these transplants is limited. Manipulation of endogenous neural precursors may be an alternative therapy or a complimentary therapy to stem cell transplantation for neurodegenerative disease and CNS injury. However, this at present is challenging and so far has been unsuccessful. Understanding mechanisms of NSC differentiation in the context of the injured CNS will be critical to achieving these therapeutic strategies.Keywords
This publication has 102 references indexed in Scilit:
- In vitro differentiation of transplantable neural precursors from human embryonic stem cellsNature Biotechnology, 2001
- Mammalian Neural Stem CellsScience, 2000
- Mitogen and Substrate Differentially Affect the Lineage Restriction of Adult Rat Subventricular Zone Neural Precursor Cell PopulationsExperimental Cell Research, 1999
- Embryonic Stem Cell Lines Derived from Human BlastocystsScience, 1998
- Oligodendrocyte-type-2 astrocyte (O-2A) progenitor cells derived from adult rat spinal cord: In vitro characteristics and response to PDGF, bFGF and NT-3Glia, 1996
- Glial-cell transplantation and plasticity in the O-2A lineage — implications for CNS repairTrends in Neurosciences, 1995
- Transplantation to the rat brain of human neural progenitors that were genetically modified using adenovirusesNature Genetics, 1995
- Transplanted cultured type‐1 astrocytes can be used to reconstitute the glia limitans of the CNS: the structure which prevents Schwann cells from myelinating CNS axonsNeuropathology and Applied Neurobiology, 1992
- Ethical issues in brain-cell transplantationTrends in Neurosciences, 1991
- Transplanted type-1 astrocytes facilitate repair of demyelinating lesions by host oligodendrocytes in adult rat spinal cordJournal of Neurocytology, 1991