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Myelination of Congenitally Dysmyelinated Spinal Cord Axons by Adult Neural Precursor Cells Results in Formation of Nodes of Ranvier and Improved Axonal Conduction
- Publication Year :
- 2007
- Publisher :
- Society for Neuroscience, 2007.
-
Abstract
- Emerging evidence suggests that cell-based remyelination strategies may be a feasible therapeutic approach for CNS diseases characterized by myelin deficiency as a result of trauma, congenital anomalies, or diseases. Although experimental demyelination models targeted at the transient elimination of oligodendrocytes have suggested that transplantation-based remyelination can partially restore axonal molecular structure and function, it is not clear whether such therapeutic approaches can be used to achieve functional remyelination in models associated with long-term, irreversible myelin deficiency. In this study, we transplanted adult neural precursor cells (aNPCs) from the brain of adult transgenic mice into the spinal cords of adultShiverer(shi/shi) mice, which lack compact CNS myelin. Six weeks after transplantation, the transplanted aNPCs expressed oligodendrocyte markers, including MBP, migrated extensively along the white matter tracts of the spinal cord, and formed compact myelin. Conventional and three-dimensional confocal and electron microscopy revealed axonal ensheathment, establishment of paranodal junctional complexes leading tode novoformation of nodes of Ranvier, and partial reconstruction of the juxtaparanodal and paranodal molecular regions of axons based on Kv1.2 and Caspr (contactin-associated protein) expression by the transplanted aNPCs. Electrophysiological recordings revealed improved axonal conduction along the transplanted segments of spinal cords. We conclude that myelination of congenitally dysmyelinated adult CNS axons by grafted aNPCs results in the formation of compact myelin, reconstruction of nodes of Ranvier, and enhanced axonal conduction. These data suggest the therapeutic potential of aNPCs to promote functionally significant myelination in CNS disorders characterized by longstanding myelin deficiency.
- Subjects :
- Journal Club
Neural Conduction
Biology
Nerve Fibers, Myelinated
Spinal Cord Diseases
White matter
Mice
Myelin
Compact myelin
Precursor cell
Ranvier's Nodes
medicine
Animals
Humans
Remyelination
Evoked Potentials
Neurons
General Neuroscience
Stem Cells
Age Factors
Cell Differentiation
Myelin Basic Protein
Articles
Spinal cord
Axons
Mice, Mutant Strains
Oligodendrocyte
Transplantation
Disease Models, Animal
medicine.anatomical_structure
nervous system
Spinal Cord
Neuroglia
Neuroscience
Stem Cell Transplantation
Demyelinating Diseases
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....eb1bb3c4bdc637ee1bb30aa9cce77ec1